U.S 

ASHBURN, Va. — Curtiss-Wright Corporation has received an approximately $14 million contract from Northrop Grumman to supply sensor-processing equipment for the U.S. Army’s Improved Threat Detection System (ITDS). The award supports Phase II development of the Army’s future aircraft threat-warning system.   ITDS for Army Aviation ITDS is designed to detect, classify and identify electro-optical and infrared threats in real time and provide the information needed for an aircraft’s defensive response. The system is intended for current and future Army aviation platforms, with priority given to the AH-64 Apache and MV-75 Future Long-Range Assault Aircraft (FLRAA).   Curtiss-Wright Processor and ATHENA Sensor Under the contract, Curtiss-Wright will provide an integrated processor capable of receiving, processing and fusing high-bandwidth sensor data before rapidly distributing threat information across the aircraft. The processor will work with Northrop Grumman’s Advanced Tactical Hostile Engagement Awareness (ATHENA) sensor. ATHENA is designed to provide 360-degree situational awareness and high-resolution detection of electro-optical and infrared threats. The system is designed to detect threats including unmanned aerial systems, air-to-air missiles, anti-tank guided missiles, rocket-propelled grenades, loitering munitions, guided man-portable air-defense systems, small-arms fire and machine guns. It can also identify related threats outside a pilot’s direct line of sight or below the aircraft.   Threat Warning and Defensive Response Once a threat is classified, ITDS is designed to provide information to the aircraft’s defensive systems and support an appropriate response. This includes directable infrared countermeasures and expendable countermeasures such as chaff and flares. The system will also provide hostile-fire warnings and distinguish small-arms fire from rocket threats.   Open Architecture and Processing Curtiss-Wright’s processor uses a modular architecture aligned with the Modular Open Systems Approach (MOSA) and Sensor Open Systems Architecture (SOSA) requirements. The equipment is housed in a conduction-cooled chassis designed for airborne operations and includes high-speed optical connections and configurable input-output interfaces. These features support both modern digital sensors and legacy aircraft systems. The processor also provides artificial-intelligence-enabled computing and real-time network-centric data sharing. The open architecture is intended to support the integration of new sensors, algorithms and countermeasure capabilities as threats evolve. The planned ITDS configuration consists of infrared sensors, a processor and a memory module connected through a digital backbone. The system is designed to conform to the Future Airborne Capability Environment (FACE).   Phase II Development The contract is part of Phase II of the Army’s ITDS Other Transaction Agreement. Northrop Grumman advanced to Phase II following earlier development and testing, including more than 51 hours of flight testing and live-fire evaluations during Phase I. Phase II includes initial prototype systems, system design, integration, architecture development, sensor assessment, and additional flight and operational testing. The program is being developed under the Army’s Program Executive Office for Intelligence, Electronic Warfare & Sensors and is intended to provide a future threat-warning capability for rotary-wing aviation while supporting integration with existing countermeasure systems. Curtiss-Wright’s approximately $14 million award provides the processing element that will operate with Northrop Grumman’s ATHENA sensor as ITDS moves through Phase II development and testing. Source : defence-industry

Read More → Posted on 2026-09-01 16:47:49
 World 

AMMAN, Jordan — Newly surfaced satellite imagery from August 31 shows a darkened area near aircraft hangars at Muwaffaq Salti Air Base in Jordan following Iran's ballistic missile attack on U.S.-linked military facilities in the country. The imagery, at coordinates 31.829263, 36.799926, shows an area that appears different from earlier imagery and is consistent with possible blast or impact damage. However, the available imagery alone does not establish the exact cause or extent of the damage. Iran launched ballistic missiles toward U.S.-linked facilities in Jordan on August 30-31 following U.S. strikes on Iranian positions on Larak Island in the Strait of Hormuz. Jordan's military said its air-defense systems intercepted eight missiles, while U.S. officials said nearly all incoming weapons were intercepted and reported no significant operational impact on the bases.   Iran's Islamic Revolutionary Guard Corps, however, claimed that its missile and drone attacks struck technical, maintenance and aircraft-related facilities at Muwaffaq Salti and other locations in Jordan. Those claims have not been independently established.   Possible damage near aircraft hangar The newly observed dark patch is located close to aircraft hangars inside Muwaffaq Salti Air Base. Open-source imagery analysts have described the feature as potentially consistent with blast damage following the August 30-31 attack. The imagery provides a visual indication of a possible impact area, but it does not by itself confirm whether a ballistic missile directly struck a hangar, what aircraft or equipment may have been affected, or whether the facility remains operational. Muwaffaq Salti has previously been targeted during the conflict. Earlier attacks reportedly caused damage to aircraft shelters and other infrastructure at the base, while U.S. officials previously reported American casualties in attacks on U.S. positions in Jordan.   Black Hawk helicopters seen on road transport Separately, footage published by several media outlets and open-source accounts reportedly shows two U.S. UH-60 Black Hawk helicopters being transported on flatbed trailers through Jordan. The helicopters have been described as possibly coming from Muwaffaq Salti Air Base or Prince Hassan Air Base. Their exact origin and destination have not been independently confirmed.   Pro-Iranian Arab media outlets published footage allegedly showing two U.S. UH-60 Black Hawk helicopters being transported on trailers in Jordan, likely from Muwaffaq al-Salti AB or Prince Hassan AB, possibly being moved out ahead of potential Iranian attacks. The way they're… https://t.co/n8JbCqNOMd pic.twitter.com/7mCNqSl911 — Egypt's Intel Observer (@EGYOSINT) August 31, 2026   Transporting helicopters by road could indicate that the aircraft were not being flown at the time, but the available footage does not establish the reason for their transport. It therefore cannot confirm whether the helicopters were damaged in Iranian attacks or were being moved for another operational or logistical reason.   U.S. aircraft movements from King Abdullah II Air Base The developments also come as U.S. aircraft have reportedly been moved from King Abdullah II Air Base in Jordan. The reported movements include C-130 transport aircraft, UH-60 Black Hawks and AH-64 Apache attack helicopters. King Abdullah II Air Base itself has not been reported as a target of Iranian missile strikes in the recent attack. The movement of aircraft from the facility may reflect wider force-protection and aircraft-distribution measures, although the U.S. military has not publicly provided details establishing the reason for each reported relocation.   Satellite imagery adds to conflicting assessments The latest imagery has emerged amid differing accounts of the August 30-31 attack. Jordan and U.S. officials have emphasized the large number of missile interceptions and limited reported impact, while Iran has claimed that its missiles caused substantial damage to U.S.-linked facilities. The August 31 satellite image provides evidence of a possible new blast-related area near hangars at Muwaffaq Salti, but higher-resolution imagery or official assessments would be required to determine the precise extent of any damage and whether aircraft or other military equipment were affected. For now, the available evidence confirms that the area changed between satellite observations, but the exact damage assessment remains unconfirmed.

Read More → Posted on 2026-09-01 16:31:13
 U.S 

WASHINGTON, — The U.S. State Department has approved a possible $800 million Foreign Military Sale (FMS) to Iraq covering Bell 412EPX utility helicopters, Bell 407M light military helicopters and associated weapons, sensors, communications equipment, training and support. The approval was notified to Congress on August 31, 2026, under the U.S. Foreign Military Sales process. The notification does not specify the number of helicopters Iraq has requested, and the proposed sale is not yet a finalized contract. The State Department said the proposed package would improve Iraq's rotary-wing transport, reconnaissance and air-to-surface targeting capabilities and support the security of what it described as a strategic partner.   Bell 412EPX and Bell 407M The proposed acquisition combines two different helicopter types. The Bell 412EPX is a twin-engine utility helicopter developed by Bell and Subaru. Bell lists seating for one pilot and up to 14 passengers, a maximum cruise speed of about 123 knots (228 km/h), a maximum internal gross weight of 12,200 pounds (5,534 kg) and a cargo-hook capacity of 5,000 pounds (2,268 kg). The helicopter is designed for utility and transport missions and has an external maximum gross weight of 13,000 pounds (5,897 kg). Bell says the 412EPX uses Pratt & Whitney PT6T-9 Twin Pac engines and an upgraded main rotor transmission. The Bell 407M is a single-engine military version of the Bell 407 family intended for military and special-mission applications. Bell lists a standard configuration of one pilot and up to six passengers, a maximum cruise speed of 133 knots (246 km/h) and an external-load maximum gross weight of 6,000 pounds (2,722 kg). Bell also lists a 3,100-pound (1,406 kg) cargo-hook capacity for the 407M and a Rolls-Royce Model 250-C47E/4 turboshaft engine producing 862 shaft horsepower at takeoff.   Weapons and Mission Systems The proposed Iraqi package includes equipment for both reconnaissance and armed missions. The weapons listed in the notification include GAU-19 three-barrel machine guns and M260 seven-tube launchers for 2.75-inch (70 mm) rockets. For surveillance and targeting, Iraq has requested L3Harris WESCAM MX-15HDI electro-optical/infrared sensors. The package also includes AN/AAR-60 Block 2 missile-launch detection systems. Additional equipment includes very-high-frequency radios, spare parts, ground-support equipment, publications and technical data. The proposed sale also covers pilot and maintenance training and U.S. government and contractor engineering, technical and logistics support.   Bell Textron to Be Principal Contractor Bell Textron, based in Fort Worth, Texas, is identified as the principal contractor for the proposed sale. The $800 million figure covers the proposed aircraft, equipment and associated support package. Because the notification does not specify the number of helicopters and the final configuration remains subject to negotiations, the eventual contract could differ from the notified proposal.   Congressional Review The State Department's approval is an important step in the U.S. FMS process, but it does not mean that a contract has been signed. Congress has a period to review the proposed transaction before the process can move toward final agreements and contracting. The proposed acquisition would add new Bell 412EPX and Bell 407M capabilities to Iraq's rotary-wing fleet while providing weapons, sensors, training and sustainment support as part of a single FMS package.

Read More → Posted on 2026-09-01 16:13:58
 World 

TOKYO — Japan’s Ministry of Defense has included the U.S.-made AGM-88G Advanced Anti-Radiation Guided Missile-Extended Range (AARGM-ER) in its fiscal 2027 budget request. Procurement is planned to begin in 2027 as Japan seeks to strengthen its ability to counter adversary integrated air-defense systems, particularly amid increased Chinese military activity. The Ministry submitted a record 8.89 trillion yen (about $55.6 billion) defense budget request on August 31, 2026. The final budget is expected to be decided by the end of December. The AARGM-ER would be the first anti-radiation missile of this type operated by the Japan Air Self-Defense Force (JASDF) since its establishment. JASDF Chief of Staff Gen. Yuhiro Morita said the missile can be carried by the F-35A and F-35B and described it as a supersonic air-launched anti-radar missile capable of reducing an adversary’s air-defense capability and supporting anti-ship attacks.   AARGM-ER capabilities Developed by Northrop Grumman, the AARGM-ER is designed for Suppression and Destruction of Enemy Air Defenses (SEAD/DEAD) missions. It can target fixed radar installations, mobile surface-to-air missile systems, command posts and other elements of an integrated air-defense network. The missile uses a multi-mode guidance system combining GPS/inertial navigation, passive anti-radiation homing and a terminal millimeter-wave active radar seeker. This allows it to continue attacking a target even if its radar is switched off. The AARGM-ER was initially developed for the U.S. Navy’s F/A-18E/F Super Hornet and EA-18G Growler and was later expanded to the F-35A, F-35B and F-35C. Its redesigned airframe allows internal carriage on the F-35A and F-35C, while a new rocket motor provides greater range and speed and an upgraded warhead improves its overall capability. Open-source assessments have placed its range at around 300 km, roughly twice that of the earlier AARGM, although the exact performance remains classified. The missile is supersonic.   Japan expands long-range strike capabilities Japan’s AARGM-ER procurement is part of a wider effort to expand its stand-off and air-defense suppression capabilities. Japanese combat aircraft previously had a predominantly defensive weapons focus, limiting their ability to attack radar sites, surface-to-air missile systems and command posts. The JASDF is also conducting flight testing of a new long-range air-launched cruise missile on the F-2 fighter. Recent observations showed an air-launched variant of the upgraded Type 12 surface-to-ship missile (SSM-2) being tested by an F-2 assigned to a specialized testing unit near Gifu Air Base. The exact specifications of the air-launched variant remain classified. The ground-launched version of the upgraded Type 12 is estimated to have a range of 1,000 to 1,500 kilometers. The fiscal 2027 budget request also includes ASM-3 Kai missiles with anti-ship and air-to-air capability, additional F-35 fighters, low-cost cruise missiles and various unmanned systems. Several quantities and costs remain listed as item requests pending updated national security strategy documents. If approved, the AARGM-ER will give the JASDF a dedicated capability to suppress and destroy enemy air-defense systems while becoming part of Japan’s broader effort to strengthen stand-off strike and air-defense capabilities.

Read More → Posted on 2026-09-01 16:00:01
 Europe 

HERning, Denmark — European defense companies Destinus, CUBEDIN A/S and OMT Group A/S have signed a Memorandum of Understanding (MoU) to develop a modular, containerized counter-drone system for naval vessels. The agreement was announced at DALO Industry Days 2026 in Herning, Denmark. The companies plan to integrate Destinus' Hornet interceptor family into standardized 10-foot and 20-foot mission modules. The system is intended to provide navies with a scalable, lower-cost defense layer against high-volume aerial threats, particularly Class 2 unmanned aerial systems (UAS) and similar threats, including loitering munitions. The containerized design is intended for rapid installation on existing surface combatants and future ship designs. Using standard ISO container footprints would allow navies to add or remove the capability according to mission requirements without major structural modifications or extensive changes to the ship's combat management system.   Roles of the Three Companies Under the agreement, Destinus will provide the Hornet interceptor system, internal launcher and mission-payload architecture. OMT Group A/S will handle naval platform engineering, structural integration and ship-design adaptations. CUBEDIN A/S will provide standardized mission-modularity interfaces and the software framework for physical, electrical and data connections with the host ship. The development is planned to progress through a Preliminary Design Review (PDR) and Critical Design Review (CDR) before full naval qualification testing. The companies intend to offer the system to European navies seeking adaptable point-defense capabilities.   Hornet Interceptor The Hornet system is designed as a kinetic interceptor for counter-UAS missions. Destinus' Hornet family includes the Hornet Block 1 and Hornet B2 variants. In June 2026, Destinus and the Spanish Navy conducted a live launch of a Hornet Block 1 interceptor from a containerized launcher installed on the F-81 Santa María frigate. The demonstration examined the use of a container-based interceptor system on an existing warship. Destinus has separately described the Hornet B2 as a further development of the system. The information provided for the programme states that it has a reported range exceeding 150 kilometers and a 3-kilogram payload.   Dutch Navy Programme The new partnership follows a separate agreement between Destinus and the Netherlands Ministry of Defence's Materiel and IT Command (COMMIT) announced in August 2026. That Concept Development and Evaluation (CD&E) programme will examine the integration of the Hornet B2 kinetic interceptor onto Royal Netherlands Navy warships. It is scheduled to continue through the second quarter of 2027, with naval operators involved in the testing and development process. The new MoU with CUBEDIN and OMT is separate from the Dutch programme but supports the broader development of a modular naval architecture for deploying Hornet interceptors on different warships. The three companies will contribute their respective expertise in interceptor technology, naval platform engineering and standardized modular integration as the project moves toward design reviews and naval qualification.

Read More → Posted on 2026-09-01 14:54:00
 World 

WASHINGTON —  An Iranian surface-to-air missile was launched in recent days toward a U.S. F-35 fighter jet operating over the Strait of Hormuz, according to a U.S. official cited by Axios. The aircraft was providing air cover for ships transiting the strategic waterway. The missile did not come close enough to threaten the F-35, and there was no reported damage to the aircraft or injury to its pilot. The specific Iranian air-defense system involved has not been publicly identified by U.S. officials. The incident has become part of a wider U.S. assessment that Iran is rebuilding radar, air-defense and anti-ship missile capabilities around the Strait of Hormuz.   U.S. Considers Limited Strikes U.S. Central Command (CENTCOM) has reportedly developed a plan for periodic, limited strikes against Iranian military capabilities around the strait. According to Axios, the proposal is intended to prevent Iran from rebuilding systems that could threaten commercial shipping, U.S. Navy ships and American aircraft operating in the area. The plan has the support of Defense Secretary Pete Hegseth and was sent to the White House for consideration several days ago. Chairman of the Joint Chiefs of Staff Gen. Dan Caine was also briefed on the proposal. The plan had not received final approval from President Donald Trump before the latest exchange of fire. The administration had previously been reluctant to approve additional strikes because of concerns about further escalation with Iran.   Strait of Hormuz Remains a U.S. Military Focus The F-35 incident comes after months of U.S. military operations aimed at reducing Iran's ability to threaten commercial vessels in and around the Strait of Hormuz. CENTCOM has previously said its forces conducted strikes against Iranian air-defense systems, coastal radar sites, anti-ship missile capabilities, command-and-control networks and other military assets connected to threats against commercial shipping. The U.S. military has also supported commercial vessel movements through the waterway. The White House said on August 28 that nearly 1,500 commercial vessels had moved through the strait under U.S. protection, although those figures were provided by the White House and were not part of the Axios report.   Recent Iranian Missile Attack Could Affect Trump's Decision The White House is also considering the situation following a separate Iranian ballistic missile attack on U.S. positions in Jordan, according to Axios. The attack followed a U.S. strike against Iranian forces that were preparing to launch rockets carrying sea mines into the Strait of Hormuz. President Trump subsequently said the United States would respond to the Iranian attack. The latest developments could therefore influence the administration's earlier reluctance to authorize the proposed limited strikes.   No Final Decision Announced The U.S. government has not publicly announced that President Trump has approved the proposed campaign of periodic strikes described by Axios. The immediate concern for CENTCOM is Iran's reported effort to restore radar, air-defense and anti-ship missile capabilities that could threaten ships and U.S. military aircraft operating around the Strait of Hormuz. The recent launch of a surface-to-air missile toward the F-35 is being treated by U.S. officials as one indication of that rebuilding effort. CENTCOM has previously stated that keeping the Strait of Hormuz open for commercial traffic remains a major operational objective.

Read More → Posted on 2026-09-01 14:43:17
 U.S 

WASHINGTON, — The U.S. Navy has awarded Boeing a $12.68 million contract modification to upgrade electronic systems on the MQ-25A Stingray, the Navy’s carrier-based unmanned aircraft. The exact contract value is $12,680,717. The modification covers non-recurring engineering and integration work for an updated Radio Frequency Blanker Unit and an Encrypted Mass Storage System with an embedded Data Transfer System. The Radio Frequency Blanker Unit is designed to prevent the aircraft’s own transmissions from interfering with its onboard sensors, while the encrypted storage system provides secure storage and transfer of mission data. The contract also includes deficiency analysis and software corrections resulting from security assessments of the MQ-25’s Mission Management System Computer. The specific deficiencies have not been publicly disclosed. About 85 percent of the work will be performed in St. Louis, Missouri, with the remaining 15 percent in Fairborn, Ohio. The work is scheduled for completion by November 2029. Fiscal 2026 Navy research, development, test and evaluation funds will cover the full amount. The modification was not competitively bid, and Naval Air Systems Command at Patuxent River, Maryland, is the contracting activity.   MQ-25's Carrier Role The MQ-25 is being developed primarily as an unmanned aerial refueling aircraft for U.S. Navy carrier air wings. It is intended to take over tanker missions currently performed by crewed F/A-18E/F Super Hornets, allowing those aircraft to remain available for other missions. The Navy has said the Stingray will be the first unmanned aircraft to routinely operate from a U.S. aircraft carrier. The platform is also planned to support intelligence, surveillance and reconnaissance missions.   2026 Flight Testing The first production-representative MQ-25A completed its approximately two-hour maiden flight on April 25, 2026, at Boeing’s facility at MidAmerica St. Louis Airport in Mascoutah, Illinois. An earlier flight attempt on April 22 was aborted for undisclosed reasons. During the maiden flight, the aircraft autonomously taxied, took off, maneuvered and landed while responding to commands from the Unmanned Carrier Aviation Mission Control System MD-5 ground station. The aircraft completed its second test flight in July, including landing-gear cycling and testing of new software intended to support future expansion of its flight envelope. Separate deck-handling trials aboard USS George H.W. Bush demonstrated the aircraft’s physical compatibility with carrier deck operations. The Boeing-owned T1 demonstrator has also participated in carrier deck activities aboard USS Nimitz. The Navy previously planned a test fleet of nine MQ-25 aircraft, including four Engineering Development Model aircraft produced under an $805 million engineering and manufacturing development contract. Future testing will expand the aircraft’s flight envelope, certify its aerial-refueling capability and eventually move to Naval Air Station Patuxent River for operational evaluation. The Navy has targeted Initial Operational Capability for the MQ-25, while the program continues its testing and development toward operational deployment.

Read More → Posted on 2026-09-01 14:15:31
 Europe 

DUSSELDORF, — Rheinmetall’s LUNA NG unmanned reconnaissance system has received provisional airworthiness certification from the Bundeswehr Aviation Authority (LufABw), moving the system closer to full type certification.   Provisional Airworthiness Certification The provisional certificate allows the LUNA NG to operate in regular restricted airspace under aviation test procedures. This removes the previous limitation of operating only in dedicated military areas and supports flight operations over densely populated European territory while meeting civil aviation safety standards. Mike Schmidt, CEO of Rheinmetall’s Air Unmanned Space business unit, said the certification process follows the same standards used for large aircraft such as the A320. He said critical systems, including the autopilot and safety-critical navigation systems, had to be developed and certified in-house because certified systems for tactical unmanned aircraft are not available on the market.   Flight Testing and Pilot Training The LUNA NG has completed around 150 flights, accumulating approximately 200 flight hours under civil operating licences. The first Bundeswehr pilots and verifiers have also completed training on the system. The provisional certification allows these qualified personnel to conduct independent flights for training and testing.   LUNA NG Specifications The Bundeswehr is introducing the system under the designation HUSAR (Highly Efficient Unmanned System for Medium-Range Reconnaissance). It is designed for sustained airborne reconnaissance, object classification and real-time detection. Key specifications include: Endurance: More than 12 hours Data-link range: More than 100 km Coverage: More than 30,000 km² Maximum operating altitude: Above 5,000 m Maximum take-off weight: 110 kg Reconnaissance speed: 90 km/h Maximum speed: 130 km/h Wingspan: 5.34 m Length: 3.17 m Height: 0.73 m Payload: Up to around 30 kg Engine: Heavy-fuel Wankel rotary engine The aircraft uses a carbon-fibre-reinforced plastic (CFRP) structure and has low acoustic, thermal and radar signatures.   Sensors and Runway-Independent Operation The LUNA NG has a modular payload architecture supporting electro-optical, infrared, acoustic and spectrum-analysis sensors. Rheinmetall also lists options for communications relay, tactical satellite communications and AI-supported data evaluation. The aircraft can be launched by catapult without a runway and recovered autonomously using differential GPS with either a net or parachute.   Bundeswehr HUSAR Order The current Bundeswehr order covers 12 standard systems plus one pilot/training system, including spare parts and training support. The contract was valued at around €200 million net. Each complete system typically consists of: Five air vehicles Two ground control stations Two launcher vehicles Two antenna masts Workshop equipment Transport platforms Deliveries were planned to begin in 2025, with the complete order scheduled through 2028. The systems are intended for the German Army’s reconnaissance and artillery units.   Integration into Military Networks Earlier in 2026, the LUNA NG participated in Bundeswehr tests of reconnaissance and strike networks at the Army Combat Training Centre. The system was integrated with the Command & Control Unmanned Management System (C2-UMS Bw) and operated alongside other unmanned systems. Rheinmetall said the LUNA NG has demonstrated its ability to operate within the Bundeswehr’s reconnaissance and operational network, including real-time interaction with other unmanned systems. The company said the majority of the required certification criteria have already been met. Rheinmetall is continuing work with the aviation authorities toward full type certification and broader operational use of the LUNA NG.

Read More → Posted on 2026-09-01 13:52:44
 U.S 

PERTH, Australia — The U.S. Department of War has announced an estimated $174 million equity investment to support construction of a new gallium production facility at Alcoa’s Wagerup alumina refinery in Western Australia. The facility is projected to produce 100 metric tons of gallium metal annually, representing up to 10 percent of global supply.   Multinational Partnership The project involves the United States, Australia and Japan. Alcoa of Australia will construct and operate the facility in partnership with Export Finance Australia, the Japanese government and Sojitz Corporation. Australia is expected to provide up to $200 million in financing for the project. The U.S. investment is being managed by the Office of the Assistant Secretary of War for Industrial Base Policy through the Industrial Base Analysis and Sustainment (IBAS) program. The U.S. financing gives the Department of War an equity position in the facility. The final dollar value of the investment will remain subject to exchange-rate movements when the transaction is completed. “This landmark agreement with our key allies, Australia and Japan, will secure a vital supply of gallium for our defense industrial base, strengthening our collective security and economic resilience for years to come,” said Michael Cadenazzi, Assistant Secretary of War for Industrial Base Policy.   Gallium Production at Wagerup The facility will recover gallium as a byproduct of Alcoa’s existing bauxite and alumina refining operations using ion-exchange technology. No additional bauxite mining will be required. The plant will occupy about 4 hectares of already cleared land at the Wagerup site, located approximately 120 to 150 kilometers south of Perth. A final investment decision was reached in July 2026, while construction began in late August 2026. The project is expected to create up to 200 construction jobs and approximately 20 permanent positions once operational. Partners are expected to receive offtake rights proportional to their interests.   Importance for Defense and Supply Chains Gallium is used in high-performance semiconductors for advanced aircraft and maritime radars, ground-based missile defense systems, secure satellite and tactical communications, electro-optical and infrared sensors for missile guidance and thermal imaging, and solar cells used by military and civilian satellites. The project is intended to strengthen the global gallium supply chain after China introduced export restrictions on gallium in 2023. China accounts for roughly 98 percent of global gallium production, making alternative sources a priority for the United States, Australia and Japan. The planned 100-metric-ton annual output would represent up to 10 percent of global supply.   U.S. Defense Industrial Base Investment The U.S. investment is being made through the IBAS program, which was established in 2014 to restore and expand production capacity supporting the defense industrial base. Since its creation, IBAS has invested more than $2.6 billion across over 200 projects. Alcoa will construct and operate the Wagerup facility, and its participation is not expected to have a material impact on the company’s overall financial position or results.

Read More → Posted on 2026-09-01 13:34:26
 Europe 

WARSAW, — Poland’s state-owned defense group Polska Grupa Zbrojeniowa (PGZ) is advancing plans to establish a joint project with an undisclosed Ukrainian defense company to produce unmanned ground vehicles (UGVs), also known as ground robotic systems.   PGZ and Ukraine Move Toward Cooperation Agreement Rafał Harmoza, Director of PGZ’s International Cooperation Department, confirmed the development in comments to Ukrinform. He said PGZ is closely following Ukrainian defense technologies, particularly unmanned systems, missile technologies and electronic warfare. The discussions intensified after the Ukraine Recovery Conference in Gdańsk in late June 2026, where PGZ met with several Ukrainian defense representatives. In August, PGZ and the potential Ukrainian partner signed a non-disclosure agreement (NDA), allowing the sides to exchange confidential information. They are now working toward a formal cooperation agreement. “We signed such an agreement in August, and now we are moving toward concluding a cooperation agreement. This will allow us to implement a specific, thoroughly developed project,” Harmoza said.   Production Based on “Build With Ukraine” Model The planned cooperation follows the “Build with Ukraine” and “Build for Ukraine” principles, with joint production focused on Ukraine’s defense requirements. Harmoza said Ukrainian defense companies are interested in establishing production facilities in Poland because of intensified Russian attacks on Ukrainian territory. PGZ is already expanding cooperation with Ukrainian defense companies. At the Gdańsk conference, it signed a letter of intent with TAF Industries covering the production of small unmanned aerial systems, including FPV drones, and electronic warfare systems for countering drones. Key components are planned to be produced in Poland using PGZ infrastructure, with the Ukrainian Armed Forces as a primary customer. TAF Industries also has UGVs in its portfolio.   European Expansion of Ukrainian UGV Production The PGZ project follows other Ukrainian-European UGV production initiatives. Ukrainian company Tencore and Finland’s Insta recently announced a joint venture to manufacture the TerMIT 2.0 unmanned ground vehicle. The initial target is 320 systems for Ukraine’s Defense Forces through a distributed production model involving Finnish industrial partners. The tracked TerMIT 2.0 can carry a payload of up to 398 kg and is used for logistics, casualty evacuation and direct-fire support. Its modular design allows weapon stations and electronic warfare equipment to be integrated. Separately, Ukrainian Unmanned Technologies (UUT) and Denmark’s Vidar Industries agreed to establish a joint venture in Denmark for serial production of the Ravlyk UGV. The planned facility has capacity for more than 3,000 systems per year, while Danish government funding is expected to support production of around 1,000 units for Ukrainian forces. UUT handles development and engineering in Ukraine, while Vidar manages production, assembly, quality control and compliance. The Ravlyk can reach 12 km/h, carry a 300 kg payload and tow up to 2 tons. It has been combat-tested on Ukraine’s eastern front, with recent configurations integrated with the Wolly 12.7 combat module and the Amulet anti-tank missile system developed by Ukraine’s Luch Design Bureau. PGZ has not disclosed the identity of its Ukrainian UGV partner, the specific vehicle involved or the planned production volume.

Read More → Posted on 2026-09-01 13:19:26
 U.S 

HILL AIR FORCE BASE, Utah — The U.S. Air Force has awarded Northrop Grumman an $86.1 million sole-source task order to provide program management, maintenance, sustaining engineering and support services for the Remote Visual Assessment (RVA) program, which provides camera and sensor-based surveillance at facilities associated with the Minuteman III intercontinental ballistic missile (ICBM) system. The Air Force Nuclear Weapons Center at Hill Air Force Base, Utah, is the contracting activity for the award. The task order is expected to run through September 2031.   Maintaining the Remote Visual Assessment system The RVA program provides a ground-based surveillance network that allows Air Force personnel to visually assess activity at Minuteman III launch facilities and other related sites. The system is particularly useful because Minuteman III launch facilities are distributed across large areas of the northern United States. When a security sensor generates an alert, personnel can use the RVA camera network to assess activity remotely rather than immediately sending personnel to the affected location. This provides security personnel with visual information for determining whether an alert requires a response. The current task order covers the continued operation and sustainment of the camera and sensor infrastructure, including program management, routine maintenance, sustaining engineering and other support services.   Work across four Air Force locations Maintenance and engineering activities under the task order will be carried out at Hill Air Force Base in Utah and at the three Air Force bases responsible for the Minuteman III missile fields: F.E. Warren Air Force Base, Wyoming Malmstrom Air Force Base, Montana Minot Air Force Base, North Dakota These installations support the dispersed Minuteman III ICBM force located across the northern United States.   $15.2 million obligated initially The task order has a total potential value of $86.1 million. At the time of the award, the Air Force obligated $15.2 million in fiscal year 2026 procurement funds. The remaining funding is expected to be provided incrementally as work under the task order progresses. The award was made through a sole-source acquisition and falls under the broader Ground Subsystems Support Contract (GSSC) effort supporting the Minuteman III system. Northrop Grumman has been involved in sustaining the ground subsystems of the Minuteman III system for years. The company's GSSC work includes engineering and field support intended to maintain the reliability and security of the ground-based ICBM system. One report identifies the task order as FA8214-26-F-B017.   Supporting the Minuteman III during the transition to Sentinel The Minuteman III is the current U.S. land-based ICBM and forms the ground-based component of the country's nuclear triad. Northrop Grumman describes the system as having been deployed since the 1970s and continues to support its sustainment. The Air Force is also developing the LGM-35A Sentinel as the replacement for Minuteman III. Sentinel is intended to modernize the ground-based component of the U.S. nuclear triad, including the missile and associated ground infrastructure. Until the replacement system is fielded, maintaining the existing Minuteman III ground infrastructure remains part of the Air Force's ongoing sustainment effort. The new $86.1 million task order therefore continues support for an existing surveillance capability used to monitor activity around Minuteman III facilities while the United States works toward its next-generation ICBM system.

Read More → Posted on 2026-09-01 13:04:56
 World 

MOSCOW, — Russia’s United Aircraft Corporation (UAC), part of the Rostec state corporation, is developing a combat artificial intelligence system for military applications. The system is being tested on the new two-seat Su-57D stealth fighter, which is also being developed for specialised pilot training and control of unmanned aerial vehicles (UAVs).   Su-57D Completes First Flight The Su-57D completed its maiden flight on May 19, 2026, at the Komsomolsk-on-Amur aviation plant. The aircraft was flown by Sukhoi chief test pilot Sergey Bogdan and remained airborne for about 40 minutes. Taxi trials had started on May 16. The prototype, carrying side number 055, was converted from an earlier single-seat T-50 flight-test airframe rather than being built as a completely new aircraft. The two-seat concept had previously appeared in a UAC patent filed in November 2023.   Training and Unmanned-Aircraft Control Rostec has identified two main roles for the Su-57D. The first is specialised pilot training, with the two-seat configuration allowing crews to practise flight regimes that cannot be fully reproduced in ground-based simulators. The second is testing technologies that Russian officials associate with sixth-generation combat aviation, including the use of the fighter as an airborne command-and-control platform for unmanned systems. Mikhail Strelets, director of the Sukhoi Design Bureau, said the additional cockpit allows the aircraft to control highly autonomous systems, including the S-70 Okhotnik heavy unmanned combat aircraft, as well as UAV groups and swarms. The arrangement allows the main pilot to concentrate on flying and the primary combat mission while the second crew member manages the unmanned systems.   Combat AI Development UAC specialists are developing a combat AI system that will be tested on the Su-57D. The programme is intended to examine the integration of artificial intelligence and autonomous decision-making with the fighter and unmanned aircraft. Russian officials have not disclosed the AI system’s detailed capabilities, level of autonomy, testing parameters or any confirmed timeline for operational deployment. The Su-57D concept builds on earlier Russian testing involving the Su-57 and S-70 Okhotnik, which began in 2019. The two-seat aircraft is intended to provide a manned platform capable of coordinating mixed formations of crewed and unmanned aircraft.   Export Potential UAC chief executive Vadim Badekha has said the two-seat version could increase the Su-57 family’s appeal on foreign markets. First Deputy Prime Minister Denis Manturov has also described the aircraft as having combat, training and tactical-control functions. India has been mentioned as a potential market for a two-seat configuration, partly because of its experience operating the two-seat Su-30MKI, although there is no confirmed Indian procurement agreement for the Su-57D. As of late August 2026, the Su-57D remains in the flight-test phase. Russia has not announced a production schedule, final operational designation or confirmed integration timeline for the combat AI system.

Read More → Posted on 2026-09-01 12:57:02
 Europe 

STOCKHOLM — Sweden and France have signed a €4.3 billion contract for four French Defense and Intervention Frigates (FDI) for the Royal Swedish Navy, with the ships to enter Swedish service as the Luleå class. The agreement was signed in Stockholm on August 31, 2026, during French President Emmanuel Macron’s visit to Sweden. The contract was signed by Mikael Granholm, Director-General of the Swedish Defence Materiel Administration (FMV), and Pierre Éric Pommellet, Chairman and CEO of Naval Group. The ceremony was held aboard the French Navy’s first FDI frigate, Amiral Ronarc’h, and was attended by Macron and Swedish Prime Minister Ulf Kristersson. The deal follows Sweden’s decision in May 2026 to begin negotiations with Naval Group for four FDI-based frigates. Sweden had selected the French design for its Luleå-class programme, with deliveries planned between 2030 and 2034.   First frigate due in 2030 Naval Group will build the frigates in France, with the first vessel scheduled for delivery in 2030. The four ships will be delivered under the following schedule: HMS Luleå — 2030 HMS Norrköping — 2032 HMS Trelleborg — 2033 HMS Halmstad — 2034 FMV said production of the ships and training of Swedish personnel can begin following the signing of the contract. Naval Group will serve as the main system integrator, with the vessels delivered ready for service.   Focus on air defense and anti-submarine warfare The Swedish frigates will be configured primarily around air defense and anti-submarine warfare. The Swedish government said the ships will also provide Sweden with the ability to establish sea control, protect maritime transport and keep sea routes open. The ships will use Aster 30 and CAMM-ER surface-to-air missiles. Swedish systems will also be integrated into the vessels, including the RBS15 anti-ship missile, Torpedo 47, Giraffe 1X radar, Trackfire remote weapon stations, and 57 mm and 40 mm naval guns. FMV confirmed the Swedish equipment included in the configuration. The combination gives the Luleå-class a mix of air-defense, anti-submarine and surface-warfare capabilities while allowing Sweden to incorporate several systems already used by its armed forces.   Larger role for the Swedish Navy The acquisition is part of Sweden’s broader effort to strengthen its naval capabilities following its accession to NATO. The Swedish government said the frigates will strengthen Sweden’s ability to defend and exercise control over its territory while improving interoperability with NATO allies during international operations. Air defense is a particular priority, with Defence Minister Pål Jonson stating that the four frigates will triple Sweden’s current air-defense capability at sea. The ships are intended to operate in the Baltic Sea and other surrounding waters, supporting maritime security and the protection of sea routes.   Wider Sweden-France defense cooperation The frigate contract was accompanied by a separate framework agreement between the Swedish and French defense ministries. Swedish Defence Minister Pål Jonson and French Minister of the Armed Forces and Veterans Affairs Catherine Vautrin signed the agreement, which is intended to establish a long-term platform for cooperation in operational matters, defense equipment and industrial development. The procurement therefore extends beyond the four ships, creating a broader framework for Swedish-French defense cooperation.   A major addition to Sweden’s fleet The Luleå-class will represent a substantial addition to Sweden’s surface fleet. Based on France’s FDI design, the frigates will be configured specifically for Swedish requirements and will combine French and Swedish defense systems. The first ship, HMS Luleå, is scheduled to be delivered in 2030, with the remaining three frigates following through 2034. Once delivered, the four vessels will become an important part of Sweden’s naval contribution to national defense and NATO maritime operations.

Read More → Posted on 2026-09-01 12:12:43
 U.S 

Plymouth, Michigan —  American Rheinmetall has delivered the first of eight Lynx XM30 combat vehicle prototypes to the U.S. Army, moving its proposed replacement for the M2 Bradley Fighting Vehicle into government-led developmental and performance testing. The delivery marks an important stage in the Army’s competitive XM30 Combat Vehicle program, under which American Rheinmetall and General Dynamics Land Systems are developing competing vehicles to replace the Bradley. The Army's own program documentation identifies the XM30 as the future replacement for the Bradley. The first Lynx prototype is being delivered under the Phase 3/4 Engineering and Manufacturing Development (EMD) contract, valued at approximately $764 million. The contract covers digital design, physical prototype development and full-system validation.   First Lynx Prototype Begins Army Evaluation American Rheinmetall CEO Matt Warnick said the delivery is an important step as the XM30 program enters a more visible phase and gives Team Lynx the opportunity to demonstrate its proposed Bradley replacement to the Army. The company plans to deliver the remaining seven prototypes later in 2026. These vehicles will support operational unit training while technical evaluations continue under the Army's Transformation in Contact (TiC) 2.0 initiative. After completing initial military safety checks, soldiers will conduct field maneuvers with the prototypes. The evaluation process is expected to progress toward large-scale combat simulations, allowing the Army to assess the vehicles under operational conditions.   Hybrid-Electric Powertrain One of the key features of the Lynx XM30 is its hybrid-electric powertrain. American Rheinmetall describes the system as providing increased power-generation capability while supporting battlefield mobility. The company also describes the vehicle as the first platform of this type to introduce a hybrid-electric powertrain. The additional electrical capacity is particularly relevant to the XM30's design because the vehicle is being developed as a digitally integrated combat system. The Lynx XM30 incorporates secure, real-time connectivity, while its architecture is designed to support the integration of new technologies during its service life. The vehicle uses a modular design and adaptive open architecture, intended to make it easier to incorporate future technologies as requirements change. The Army's XM30 program also emphasizes modular open systems as part of the vehicle's future upgrade capability.   Designed for a Changing Battlefield The Lynx XM30 is being developed for an operating environment increasingly affected by drones, precision weapons and electronic warfare, according to American Rheinmetall. The company's U.S. XM30 offering includes a U.S.-designed uncrewed 50mm turret, a two-soldier crew concept, integrated vehicle protection systems and a modular open architecture. The Army's broader XM30 requirements are focused on providing improved protection, firepower, mobility and survivability compared with the Bradley while allowing the vehicle to operate as part of a joint combined-arms force. The Army also intends the XM30 to work with maneuver robotics and semi-autonomous systems.   U.S. Production Network The Lynx XM30 prototypes are being produced through a multi-state U.S. manufacturing process. Turret fabrication takes place in Plymouth, Michigan, while hull and chassis integration is carried out in Slidell, Louisiana. Completed vehicles undergo automotive shakeout trials before returning to Louisiana for final painting and detailing. Before formal government acceptance, each prototype undergoes a joint inspection involving the Defense Contract Management Agency (DCMA). American Rheinmetall is the prime contractor for Team Lynx, whose partners include Textron Systems, Raytheon, L3Harris Technologies, Allison Transmission and Anduril Industries, along with a wider network of U.S. suppliers.   Competition to Replace the Bradley The Lynx XM30 is competing against the General Dynamics Land Systems XM30 design. The U.S. Army selected the two companies in 2023 to proceed with detailed design and prototype development for the Bradley replacement program. The Army plans to evaluate the competing prototypes before selecting one design to proceed toward the next stage of the program. Rheinmetall's earlier contract announcement stated that the Army planned to down-select to one vendor for Low-Rate Initial Production in Phase 5 near the end of 2027. The delivery of the first Lynx XM30 therefore begins a key physical testing stage in the competition. The Army's evaluation of the two prototype designs will determine which vehicle advances toward becoming the next-generation infantry fighting vehicle intended to replace the M2 Bradley.

Read More → Posted on 2026-09-01 12:01:00
 U.S 

WASHINGTON, D.C. — Interest payments on the U.S. federal debt reached a record share of government revenue in fiscal year 2025, highlighting the growing cost of servicing the national debt. Net interest payments totaled about $970 billion in fiscal 2025, while federal receipts were approximately $5.24 trillion. That meant interest payments consumed about 18.5% of federal revenue, the highest share since the federal data series began in 1940. The previous high was about 18.4% in 1991. The increase has been driven by the combination of a larger federal debt balance and higher interest rates than those seen during much of the 2010s and early 2020s.   Interest Costs Have Risen Rapidly The increase in interest costs has been particularly pronounced since fiscal 2021. Net interest was about $352 billion in 2021, before rising to roughly $970 billion in 2025. Over the same period, interest as a share of federal revenue increased from about 8.7% to 18.5%. The federal government must borrow when its spending exceeds its revenue. As the amount of debt grows, the government must make interest payments on that accumulated borrowing. Higher Treasury yields have also increased the cost of refinancing existing debt and issuing new debt. As Treasury securities mature, they are replaced with new securities at prevailing market rates.   Debt Is Adding Pressure to the Federal Budget The Congressional Budget Office expects the federal government's debt and interest costs to continue increasing under current law. In its February 2026 budget outlook, the CBO projected that net interest costs would rise from $970 billion in fiscal 2025 to about $1.0 trillion in fiscal 2026. The agency expects net interest costs to reach about $2.1 trillion by 2036, or 4.6% of GDP. The CBO also projects that debt held by the public will increase from about 101% of GDP in 2026 to 120% in 2036. In its long-term projections, debt held by the public could reach 175% of GDP by 2056 if current laws remain generally unchanged.   Interest Costs Are Becoming a Larger Budget Item The rising interest bill is increasingly significant compared with other federal spending categories. In fiscal 2025, the government's approximately $970 billion in net interest costs exceeded federal spending on national defense in that year, according to budget comparisons using federal data. The interest bill also ranks among the largest individual categories of federal spending. The issue is not only the size of the current payment. Higher interest costs can also contribute to larger future deficits when the government continues to borrow to finance budget shortfalls.   Long-Term Outlook The CBO's projections show that interest costs are expected to continue rising over the next decade. By 2036, CBO projects net interest payments of about $2.1 trillion, more than twice the 2025 level. The Committee for a Responsible Federal Budget estimates that interest could account for roughly one-quarter of federal revenue by that point. CBO's longer-term projections are also significant. By 2056, net interest costs are projected to reach 6.9% of GDP, while debt held by the public could rise to 175% of GDP under current law. The 2025 figures therefore mark an important change in the federal budget. Interest payments have become a much larger claim on federal revenue, while the government's debt and borrowing costs remain on an upward path under current fiscal projections.

Read More → Posted on 2026-08-31 16:55:10
 World 

KYIV, — Russia sharply increased its use of jet-powered attack drones against Ukraine in July, deploying five times more than in June, according to Yurii Ihnat, head of the Communications Department of Ukraine’s Air Force Command. Speaking on August 31, Ihnat said Ukrainian forces recorded more than 1,500 drones over a recent four-day period, including about 800 jet-powered UAVs. Ukraine’s overall air-defense effectiveness remained around 90%, but jet-powered drones were intercepted less frequently than conventional Shahed-type drones. The shift includes jet-powered variants such as the Geran-3, Geran-4 and Geran-5, as well as the S8000 Banderol. Ukrainian officials say Russia has increased their use because conventional defenses have been highly effective against slower, piston-engine Shahed drones.   Speed and altitude challenge Some of the new jet-powered UAVs can reach about 600 km/h, while Ukrainian interceptor drones currently reach roughly 300 km/h, making direct pursuit difficult. The UAVs can also operate at around 5 km altitude, putting them beyond the effective range of many mobile fire teams and portable air-defense systems. Ihnat said countering the faster systems requires short-range surface-to-air missile systems, air-defense aviation and fighter aircraft equipped with air-to-air missiles. Ukraine is also developing faster interceptor drones. Ukrainian researchers previously reported that Russia used about 1,400 jet-powered strike UAVs during the first months of 2026, compared with roughly 180 during all of 2025. Ukrainian assessments have also put production of Geran-4 and Geran-5 at around 3,000 units per month, with jet-powered drones accounting for about 15–25% of some recent attack packages.   S8000 Banderol Russia has also expanded production and use of the S8000 Banderol, a system variously described as a missile, drone-missile, loitering munition or small cruise missile. Ukrainian reporting puts its production at about 80 units per month. The Banderol is approximately 5 meters long, has a 30-centimeter fuselage diameter and folding wings and stabilizers spanning about 2.2 meters. Its maximum speed is listed at 620–650 km/h, cruising speed at 520–560 km/h, and range at about 500 km. The system carries an OFBCh-150 warhead weighing about 114.3 kg, including 49.5 kg of explosives. Ukrainian intelligence has identified a Chinese SW800Pro-A95 turbojet engine among its components, along with other foreign-made electronics. The Banderol can be carried by the Orion UAV, while Ukrainian reporting has also identified planned use from the Mi-28N helicopter. Its small diameter and composite construction reduce its radar cross-section, while low-altitude flight can make detection more difficult, particularly when terrain provides concealment. Russia’s increased use of jet-powered UAVs and Banderol systems shows a shift toward faster aerial weapons that require Ukraine to use more specialized interception systems than those commonly employed against slower propeller-driven drones.

Read More → Posted on 2026-08-31 16:50:11
 Space & Technology 

NEW DELHI, — The Government of India has notified the Legal Metrology (Indian Standard Time) Rules, 2026, making Indian Standard Time (IST) the common time reference for legal, administrative, commercial and other official purposes across the country. The Department of Consumer Affairs notified the rules on August 27, 2026. They will come into force 180 days after their publication in the Official Gazette, giving government departments, businesses, institutions and other organisations time to make the necessary technical and operational changes. The move is part of the broader “One Nation, One Time” initiative and is aimed at establishing a common and synchronised time reference for systems that depend on accurate timestamps.   Why the new rules matter India already uses IST for civil time, but many digital and technology-based systems obtain timing information through different sources. The government said the growing use of such systems has increased the need for a common time reference. Accurate and synchronised time is important for banking and digital payments, telecommunications, power systems, transportation, computer networks and government records. A common reference can help systems maintain consistent timestamps and establish the sequence of events across different networks and locations. It can also assist in analysing technical failures and other time-dependent events.   180-day transition period The rules do not require organisations to change their systems immediately. The government has provided a 180-day period between publication of the rules and their commencement. During this period, government departments, businesses, institutions and other organisations can review their existing timing systems and make the technical changes required to comply with the new framework. The exact commencement date will depend on the date of publication in the Official Gazette.   Banking, telecom and critical infrastructure The new framework covers systems where precise time references are important. In banking and digital payments, synchronised timestamps can help maintain accurate records of transactions. Telecommunications and computer networks also depend on coordinated clocks for system operations and event logging. Transport and power infrastructure are other areas where accurate time synchronisation is important. Government records and other official systems will also use the common IST reference under the new rules.   CSIR-NPL remains responsible for India's national time scale The CSIR-National Physical Laboratory (NPL) maintains India's primary time scale, known as UTC(NPLI). Indian Standard Time is derived from this national time scale. The government is developing domestic mechanisms to distribute IST to users and critical systems. These include Indian satellite navigation infrastructure and other authorised sources. The objective is also to provide alternatives to dependence on foreign satellite-based timing sources for critical systems.   White Rabbit technology for precise time distribution As part of the One Nation, One Time initiative, the government commissioned a White Rabbit Technology-based Indian Standard Time Dissemination Demonstration Network at the Regional Reference Standard Laboratory (RRSL) in Bengaluru in July 2026. White Rabbit is a high-precision network timing technology designed to synchronise clocks over fibre-optic networks. The Indian demonstration has been used to distribute IST to sectors including banking, telecommunications, power, transportation and digital governance. The government also demonstrated secure dissemination of IST between RRSL Bengaluru and NSE Chennai. The demonstration involved CSIR-NPL, ISRO, SEBI, NSE, BSNL and other stakeholders.   Reducing dependence on foreign timing sources The government has highlighted the development of Indian time-dissemination infrastructure as a way to provide additional options for critical systems and reduce dependence on external time sources. India's NavIC satellite navigation system is among the domestic sources that can support the dissemination of Indian Standard Time, alongside other authorised Indian systems. This approach is intended to strengthen the availability of a nationally controlled time reference for systems that depend on accurate timing.   What changes for organisations The new rules establish IST as the common reference for official time-dependent systems across the country. Organisations will have the 180-day transition period to examine their existing systems and prepare for implementation. The rules do not create a new civil time zone for India. Instead, they standardise the authoritative time reference used for legal, administrative, commercial and other official purposes. The government said the Legal Metrology (Indian Standard Time) Rules, 2026 are intended to provide a common Indian Standard Time reference for time-dependent systems and official purposes nationwide.

Read More → Posted on 2026-08-31 16:36:40
 World 

JAN MAYEN, Norway, — Military forces from the United States, United Kingdom and Norway have deployed to the remote Norwegian island of Jan Mayen for Operation Atlantic City 26, a trilateral military activity running from August 26 through September 4. The operation is part of NATO’s Arctic Sentry, an enhanced-vigilance activity designed to strengthen Allied coordination and security in the High North.   Jan Mayen’s Strategic Location Jan Mayen is a Norwegian territory in the Norwegian Sea, approximately 1,000 kilometers (620 miles) from mainland Norway and north of the Greenland-Iceland-United Kingdom (GIUK) gap. The island has a dirt runway but no harbor, with only offshore anchorages. Its remote location, severe weather and limited infrastructure make it a challenging environment for military deployments.   Allied Forces Build a ‘Joint Kill Web’ The participating forces are connecting sensors, command-and-control nodes and precision fires into what the U.S. Marine Corps describes as a “joint kill web.” The network is intended to support rapid targeting and help restrict adversary movement in contested maritime areas. U.S. Marine Corps Lt. Col. David Palacio, fires officer for U.S. Marine Corps Forces Europe and Africa, said the deployment demonstrates the Marine Corps’ role in enabling joint and combined forces.   U.S., UK and Norwegian Forces The U.S. contingent includes Marines from U.S. Marine Corps Forces Europe and Africa, II Marine Expeditionary Force, the 10th Marine Regiment and Marine Air Support Squadron 1. A HIMARS platoon from the 3-197th Field Artillery Regiment of the New Hampshire Army National Guard is supporting precision fires. Elements of the U.S. Sixth Fleet and Task Force 68 are also involved in maritime operations. MC-130 and C-130 aircraft are providing airlift support. Norway is contributing personnel from the Royal Norwegian Navy and Norwegian Home Guard. The UK has deployed Royal Marine Commandos and elements of the Royal Air Force’s LXX Squadron.   RAF A400M Delivers Troops and Vehicles On August 29, an RAF A400M Atlas from LXX Squadron at RAF Brize Norton delivered U.S. Marines, Royal Marines and two Joint Light Tactical Vehicles to Jan Mayen. A similar A400M landing was conducted during the 2025 iteration of the activity.   Operation Linked to Northern Viking 26 Atlantic City 26 is being conducted alongside Operation Northern Viking 26, allowing participating forces to share maritime surveillance and sensing capabilities across the European theater. Both activities support Arctic Sentry, which was launched in February 2026 and is led by Joint Force Command Norfolk. The framework is intended to synchronize Allied activities, improve common situational awareness and strengthen deterrence in the High North. Norwegian Army Maj. Gen. Frode Kristoffersen, Deputy Chief of Staff for Operations at Joint Force Command Norfolk, said Arctic Sentry is intended to coordinate Allied Arctic activities and maximize their combined effect.   Historical Background The name Operation Atlantic City comes from a U.S. military base established at Nordlaguna on Jan Mayen during the Second World War. The base supported weather observations and Allied control of the North Atlantic. The current activity follows similar training conducted on and around Jan Mayen in September 2025. It also tests how Allied forces operate across long distances, limited infrastructure, severe weather and rapidly changing conditions in the High North.

Read More → Posted on 2026-08-31 16:28:34
 Europe 

HOHENFELS, Germany, August 31, 2026 — Polish special forces are taking part in a U.S.-led military exercise in southern Germany designed to train troops to move and operate in areas heavily monitored by drones. The exercise was developed by U.S. Army Green Berets using lessons from the war in Ukraine. The training began on August 28 at the Joint Multinational Readiness Center near Hohenfels and covers a roughly 3,000-square-kilometer (1,100-square-mile) training area. It is the first time a NATO ally has participated in this specific exercise. U.S. special forces previously conducted the scenario twice earlier this year. Under the scenario, a U.S. Army airborne infantry unit parachutes into the Hohenfels training area and establishes a simulated front line. Polish troops must cross the positions without being detected before traveling about 100 kilometers (60 miles) north to the Grafenwöhr Training Area, where they must conduct a simulated drone strike against a target. The route passes through forests, farmland, villages, farms and populated areas. Polish operators must avoid detection by military forces as well as civilians, surveillance cameras and local police reports. In earlier versions of the exercise, U.S. special forces removed their uniforms to blend into the civilian environment. U.S. forces acting as the opposing force use drones to search for the Polish team. Previous versions involved more than 100 drones, while military police units with dogs could also be sent after troops who were detected. Within the exercise, soldiers who are located can be considered “captured or killed.” A U.S. Army Green Beret officer said the exercise attempts to replicate battlefield effects that Russia and Ukraine have had to overcome during the war. The training is part of a wider U.S. effort to adapt to drone warfare. Through the Army's Transforming in Contact (TiC) program, the 3rd Brigade Combat Team, 10th Mountain Division tested more than 150 unmanned systems during its deployment in Europe, including systems for reconnaissance, electronic warfare, command and control and mobile operations. The U.S. military has also established Joint Interagency Task Force 401 (JIATF 401) to focus on countering unmanned aircraft systems and accelerating the integration of counter-drone technologies. The task force studies drone warfare experiences from Ukraine and European countries. Separately, a specialized U.S. Army unit in Europe that had been studying drone warfare was recently directed to return to its primary role as an airborne infantry battalion. The unit, drawn from the 173rd Airborne Brigade, had experimented with drone tactics and systems based on observations from Ukraine and is expected to report its findings to the Army. The U.S. Army plans to conduct the Hohenfels drone-evasion exercise several times a year, with special forces from additional NATO countries expected to participate. U.S. officials have indicated that most of NATO's 32 member states are likely to show interest in the training.

Read More → Posted on 2026-08-31 16:22:11
 Space & Technology 

BREMEN, Germany — German satellite manufacturer OHB SE has signed a contract worth nearly €1 billion with European satellite operator SES to develop and build 18 medium Earth orbit (MEO) satellite platforms for the European Union’s IRIS² secure connectivity programme. The contract is the first major industrial order under the IRIS² concession and follows the formal launch of the programme’s implementation phase on August 6, 2026.   OHB to Build 18 MEO Satellite Platforms SES is responsible for delivering the MEO segment of IRIS² through the SpaceRISE consortium, which was selected by the European Commission to develop and deploy the system. SpaceRISE includes SES, Eutelsat and Hispasat. OHB has been part of the SpaceRISE industrial core team since the beginning of the programme. Under the new contract, the company will develop and manufacture the 18 satellite platforms that will form a central part of the MEO segment. Each platform is planned to have a maximum power output of about 15 kilowatts and a launch mass of approximately 2.6 tonnes, according to OHB.   IRIS² to Use 348 Satellites The expanded IRIS² constellation will consist of 348 satellites, including 330 satellites in low Earth orbit (LEO) and 18 satellites in MEO. The programme will also include a dedicated secure ground segment. The European Commission says the multi-orbit architecture is intended to provide global coverage while requiring fewer satellites than a system based entirely on LEO. The architecture is also designed to maintain short signal transmission times. The EU expanded the planned constellation by adding 66 LEO satellites during the negotiations that led to the implementation agreement in August. The programme has now moved from the planning stage into full-scale deployment.   Secure Communications for Europe IRIS² — the Infrastructure for Resilience, Interconnectivity and Security by Satellite — is intended to provide secure and high-performance satellite communications for public authorities and private users. The European Commission also says the system will support critical infrastructure, crisis-response capabilities and connectivity in rural and remote areas. The programme is being implemented as a public-private partnership led by the European Commission, with technical support from the European Space Agency and the European Union Agency for the Space Programme. IRIS² is described by OHB as Europe’s third major flagship space programme alongside Galileo and Copernicus. The expanded programme is intended to strengthen secure communications capabilities for European governments, defence and security services, and emergency services.   First Launches Planned for 2029 The implementation agreement signed in August established the next steps for the programme, including detailed satellite development, construction of the secure ground infrastructure and procurement of launch services. The first IRIS² satellite launches are planned for 2029, while initial services are expected to become available from 2030. OHB CEO Marco Fuchs said the programme would further expand the company's role in Europe’s strategic space infrastructure and highlighted its previous involvement in Galileo and Copernicus. SES Chief Product and Innovation Officer Xavier Bertran said the contract with OHB represents an important step toward delivering Europe’s next generation of secure and resilient communications infrastructure. OHB System Executive Board member Gianaldo Mantovani said Europe needs independent communications capabilities and that OHB is contributing its experience in satellite-platform development and MEO constellations. The contract places OHB in a key industrial role for the 18-satellite MEO segment, while SES remains responsible for its delivery within the wider SpaceRISE consortium.

Read More → Posted on 2026-08-31 15:52:23
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