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July 9, 2022 | International, Aerospace

Le suédois Saab va s'impliquer dans le programme de drone MALE européen conduit par Airbus - Zone Militaire

En février dernier, neuf ans après avoir été proposé par Airbus, Dassault Aviation et Leonardo, le projet de drone MALE européen, encore appelé EuroDrone,

http://www.opex360.com/2022/07/07/le-suedois-saab-va-simpliquer-dans-le-programme-de-drone-male-europeen-conduit-par-airbus/

On the same subject

  • Timing is Everything: The Role of Just-in-Time Privileged Access in Security Evolution

    April 15, 2024 | International, C4ISR

    Timing is Everything: The Role of Just-in-Time Privileged Access in Security Evolution

    Did you know? Implementing JIT privileged access can drastically cut down the risk of privilege misuse! Learn how to secure your systems with JIT stra

  • Naval Air Systems Command Exercises Option for an Additional $38.7 Million for Full Rate Production (Lot 2) of the BQM-177A Subsonic Aerial Target System

    December 11, 2020 | International, Aerospace, Naval

    Naval Air Systems Command Exercises Option for an Additional $38.7 Million for Full Rate Production (Lot 2) of the BQM-177A Subsonic Aerial Target System

    San Diego, December 10, 2020 (GLOBE NEWSWIRE) -- Kratos Defense & Security Solutions, Inc. (NASDAQ: KTOS), a leading National Security Solutions provider and industry-leading provider of high-performance, jet-powered unmanned aerial systems, announced today that Kratos has received an additional $38,691,360 from the U.S. Navy for Lot 2 of its recently-awarded Full Rate Production (FRP) contract for an additional 48 BQM-177A Subsonic Aerial Targets (SSAT) and associated technical data. Steve Fendley, President of Kratos Unmanned Systems Division, said, “The SSAT is an incredibly high-performance threat representation system consistently providing performance levels previously unachievable. The exercise of the FRP Lot 2 option secures the uninterrupted production of our SSAT system well into the Government's Fiscal Year (GFY) 2023. Concurrently, we have been part of the Navy's site activation plan and I couldn't be prouder of the part we played in supporting the first flight at the Pacific Missile Range Facility in Kauai, Hawaii last month. Under Captain Molly Boron's leadership, the NAVAIR-Kratos team is already halfway to its goal of achieving Full Operational Capability (FOC) in GFY21. Even under normal circumstances, achievement of FOC would be very challenging but to be making the progress we have during this pandemic is a testament both to the Navy's leadership and the commitment and perseverance of the Kratos team during these challenging times.” About Kratos Defense & Security Solutions Kratos Defense & Security Solutions, Inc. (NASDAQ:KTOS) develops and fields transformative, affordable technology, platforms and systems for United States National Security related customers, allies and commercial enterprises. Kratos is changing the way breakthrough technology for these industries are rapidly brought to market through proven commercial and venture capital backed approaches, including proactive research and streamlined development processes. At Kratos, affordability is a technology, and we specialize in unmanned systems, satellite communications, cyber security/warfare, microwave electronics, missile defense, hypersonic systems, training, combat systems and next generation turbo jet and turbo fan engine development. For more information, please visit www.KratosDefense.com. Notice Regarding Forward-Looking Statements Certain statements in this press release may constitute “forward-looking statements” within the meaning of the Private Securities Litigation Reform Act of 1995. These forward-looking statements are made on the basis of the current beliefs, expectations and assumptions of the management of Kratos and are subject to significant risks and uncertainty. Investors are cautioned not to place undue reliance on any such forward-looking statements. All such forward-looking statements speak only as of the date they are made, and Kratos undertakes no obligation to update or revise these statements, whether as a result of new information, future events or otherwise. Although Kratos believes that the expectations reflected in these forward-looking statements are reasonable, these statements involve many risks and uncertainties that may cause actual results to differ materially from what may be expressed or implied in these forward-looking statements. For a further discussion of risks and uncertainties that could cause actual results to differ from those expressed in these forward-looking statements, as well as risks relating to the business of Kratos in general, see the risk disclosures in the Annual Report on Form 10-K of Kratos for the year ended December 29, 2019, and in subsequent reports on Forms 10-Q and 8-K and other filings made with the SEC by Kratos. Press Contact: Yolanda White 858-812-7302 Direct Investor Information: 877-934-4687 investor@kratosdefense.com View source version on Kratos Defense & Security Solutions, Inc.: https://ir.kratosdefense.com/news-releases/news-release-details/naval-air-systems-command-exercises-option-additional-387

  • DARPA: Training AI to Win a Dogfight

    May 9, 2019 | International, Aerospace, Other Defence

    DARPA: Training AI to Win a Dogfight

    Artificial intelligence has defeated chess grandmasters, Go champions, professional poker players, and, now, world-class human experts in the online strategy games Dota 2 and StarCraft II. No AI currently exists, however, that can outduel a human strapped into a fighter jet in a high-speed, high-G dogfight. As modern warfare evolves to incorporate more human-machine teaming, DARPA seeks to automate air-to-air combat, enabling reaction times at machine speeds and freeing pilots to concentrate on the larger air battle. Turning aerial dogfighting over to AI is less about dogfighting, which should be rare in the future, and more about giving pilots the confidence that AI and automation can handle a high-end fight. As soon as new human fighter pilots learn to take-off, navigate, and land, they are taught aerial combat maneuvers. Contrary to popular belief, new fighter pilots learn to dogfight because it represents a crucible where pilot performance and trust can be refined. To accelerate the transformation of pilots from aircraft operators to mission battle commanders — who can entrust dynamic air combat tasks to unmanned, semi-autonomous airborne assets from the cockpit — the AI must first prove it can handle the basics. To pursue this vision, DARPA created the Air Combat Evolution (ACE) program. ACE aims to increase warfighter trust in autonomous combat technology by using human-machine collaborative dogfighting as its initial challenge scenario. DARPA will hold a Proposers Day for interested researchers on May 17, 2019, in Arlington, Virginia. “Being able to trust autonomy is critical as we move toward a future of warfare involving manned platforms fighting alongside unmanned systems,” said Air Force Lt. Col. Dan Javorsek (Ph.D.), ACE program manager in DARPA's Strategic Technology Office (STO). “We envision a future in which AI handles the split-second maneuvering during within-visual-range dogfights, keeping pilots safer and more effective as they orchestrate large numbers of unmanned systems into a web of overwhelming combat effects.” ACE is one of several STO programs designed to enable DARPA's “mosaic warfare” vision. Mosaic warfare shifts warfighting concepts away from a primary emphasis on highly capable manned systems — with their high costs and lengthy development timelines — to a mix of manned and less-expensive unmanned systems that can be rapidly developed, fielded, and upgraded with the latest technology to address changing threats. Linking together manned aircraft with significantly cheaper unmanned systems creates a “mosaic” where the individual “pieces” can easily be recomposed to create different effects or quickly replaced if destroyed, resulting in a more resilient warfighting capability. The ACE program will train AI in the rules of aerial dogfighting similar to how new fighter pilots are taught, starting with basic fighter maneuvers in simple, one-on-one scenarios. While highly nonlinear in behavior, dogfights have a clearly defined objective, measureable outcome, and the inherent physical limitations of aircraft dynamics, making them a good test case for advanced tactical automation. Like human pilot combat training, the AI performance expansion will be closely monitored by fighter instructor pilots in the autonomous aircraft, which will help co-evolve tactics with the technology. These subject matter experts will play a key role throughout the program. “Only after human pilots are confident that the AI algorithms are trustworthy in handling bounded, transparent and predictable behaviors will the aerial engagement scenarios increase in difficulty and realism,” Javorsek said. “Following virtual testing, we plan to demonstrate the dogfighting algorithms on sub-scale aircraft leading ultimately to live, full-scale manned-unmanned team dogfighting with operationally representative aircraft.” DARPA seeks a broad spectrum of potential proposers for each area of study, including small companies and academics with little previous experience with the Defense Department. To that end, before Phase 1 of the program begins, DARPA will sponsor a stand-alone, limited-scope effort focused on the first technical area: automating individual tactical behavior for one-on-one dogfights. Called the “AlphaDogfight Trials,” this initial solicitation will be issued by AFWERX, an Air Force innovation catalyst with the mission of finding novel solutions to Air Force challenges at startup speed. The AFWERX trials will pit AI dogfighting algorithms against each other in a tournament-style competition. “Through the AFWERX trials, we intend to tap the top algorithm developers in the air combat simulation and gaming communities,” Javorsek said. “We want them to help lay the foundational AI elements for dogfights, on which we can build as the program progresses.” AFWERX will announce the trials in the near future on its website: https://www.afwerx.af.mil/. For ACE Proposers Day registration details, please visit: https://go.usa.gov/xmnMn https://www.darpa.mil/news-events/2019-05-08

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