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August 31, 2023 | International, Aerospace

F-15EX weapons test ends key phase, could lead to production decision

The F-15EX took part in 19 large-force events to test how well it could integrate with fifth-generation aircraft and fire missiles.

https://www.defensenews.com/air/2023/08/31/f-15ex-weapons-test-ends-key-phase-could-lead-to-production-decision/

On the same subject

  • Collins’ virtual dogfighting training system flies on US Navy F/A-18E Super Hornet

    February 5, 2021 | International, Aerospace, Naval

    Collins’ virtual dogfighting training system flies on US Navy F/A-18E Super Hornet

    By Garrett Reim The US Navy has completed the first in-flight test of Collins Aerospace's Tactical Combat Training System II (TCTS II), a system that could become the brains behind future large-scale virtual dogfights. The service tested the system on a US Navy (USN) F/A-18E Super Hornet at NAS Patuxent River, Maryland, Collins Aerospace says. TCTS II's wing-tip mounted pods, integrated into ground stations and onboard computers, allow naval aviators to dogfight without actually firing a shot. The system allows virtual firing of missiles and guns. The system features a number of improvements versus older combat training systems, Collins said on 1 February. Unlike prior legacy systems, “TCTS II connects to the aircraft weapons bus securely, which provides access to classified aircraft data, and then pushes and pulls data,” says the company. “When it pushes data, it stimulates aircraft systems and sensors, so the pilot thinks they are engaging with real threats.” It can simulate situations where the aviator uses a jet's active electronically scanned array radar or infrared search-and-track sensor. The system can also simulate a number of weapons, from unclassified operational munitions to those classified Top Secret. And, TCTS II can deliver real-time kill notifications. “What starts the simulation is when the pilot pulls the trigger in the aircraft just like in a real mission,” says Collins. “It also sends a signal to the ground and range training officer's screen, showing them a sim weapon has been launched. Algorithms then run that calculation, the likelihood of a good shot in percentages, and display that to the range training officer.” The simulation also can be manipulated by personnel on the ground. “The range training officer can then decide if they want that shot to count – and remove the targeted platform from the exercise – or overrule the simulation to allow that platform to continue fighting for training purposes,” says Collins. “The shot would then be debriefed later with all interested parties and the accuracy of the shots can then be discussed.” During combat training simulations, TCTS II collects data that can later be reviewed to develop new tactics, techniques and procedures. Collins claims this speeds up development times to a “matter of weeks, instead of months or years”. TCTS II can simulate a variety of combat training, from two-on-two dogfights to exercises with more than 200 participants, the company says. It can also simulate threats from ground-based weapons. The first flight of TCTS II on the F/A-18E is part of the developmental test phase. Collins anticipates it will pave the way for a USN production decision later this year. The system is expected to be qualified on every aircraft in the service's fleet, including Lockheed Martin F-35 stealth fighters. https://www.flightglobal.com/fixed-wing/collins-dogfighting-training-system-flies-on-us-navy-f/a-18e-super-hornet/142275.article

  • Les nouveaux jets coûteraient 18 milliards

    June 1, 2020 | International, Aerospace

    Les nouveaux jets coûteraient 18 milliards

    Les coûts d'achat et d'entretien des nouveaux avions de combat ont été révélés dans la presse dominicale. Les nouveaux avions de combat coûteraient 18 milliards de francs au total, selon une estimation du Département fédéral de la défense (DDPS). En plus des coûts d'acquisition de 6 milliards de francs, près de 12 milliards viennent s'ajouter pour la maintenance des jets pendant toute la durée de leur utilisation. Ces chiffres publiés par la «SonntagsZeitung» ont été confirmés par l'Office fédéral des armements (ArmaSuisse). Pour les articuler, Berne s'est appuyée sur vingt ans d'exploitation de la flotte d'avions de chasse F/A-18 actuellement en service. «En règle générale, les coûts d'exploitation calculés sur trente ans devraient être environ deux fois plus élevés que le coût d'achat», a déclaré le porte-parole d'ArmaSuisse. Comme ni le type d'avions ni leur nombre ne sont encore déterminés, des calculs plus précis ne sont pas encore possibles. Le Conseil fédéral devrait faire son choix début 2021. Cette estimation de Berne a été précédée de discussions politiques sur les coûts des jets pendant tout leur cycle de vie. Dans certains cas, des montants beaucoup plus élevés que les 18 milliards de francs ont été articulés. Les opposants à l'achat de nouveaux avions de combat ont parfois estimé les dépenses à environ 24 milliards de francs. Ils se sont appuyés en partie sur des calculs effectués par les autorités allemandes et canadiennes. Votation fin septembre Le Conseil fédéral et le parlement prévoient d'acheter de nouveaux avions de chasse pour 6 milliards de francs à partir de 2025. Il s'agit de remplacer la flotte actuelle d'avions F/A-18 et Tiger. Les Suisses voteront le 27 septembre prochain après que le Groupe pour une Suisse sans armée (GSsA), le PS et les Verts ont lancé un référendum. Les Helvètes ne se prononceront pas sur le type d'avion, ni sur le nombre de jets, entre 36 et 40, qui seront achetés. Actuellement, une deuxième série d'offres est en cours. Au printemps dernier, quatre fabricants ont fait voler leurs engins dans le ciel suisse lors d'une démonstration. Quatre jets restent dans la course: le Rafale français (Dassault), l'Eurofighter allemand (Airbus) et, côté américain, le successeur du F/A-18, le Super Hornet de Boeing, et le F-35A de Lockheed-Martin. https://www.tdg.ch/les-nouveaux-jets-couteraient-18-milliards-574000585177

  • BAE successfully tests solar-powered high-altitude plane

    February 18, 2020 | International, Aerospace

    BAE successfully tests solar-powered high-altitude plane

    ByEd Adamczyk Feb. 17 (UPI) -- A solar-powered unmanned aircraft with a wingspan of 114 feet completed its maiden high-altitude flight in the stratosphere, maker BAE Systems said on Monday. The plane, called PHASA-35, which stands for Persistent High altitude Solar Aircraft and its wingspan measured in meters, is meant to fly about 32 miles above the earth in the space, in the upper atmosphere between conventional aircraft and satellites. The aircraft's solar-powered batteries could allow it to stay aloft for over a year at a time, providing a stable platform for monitoring, surveillance, communications and security applications. It can also offer military and commercial customers with capabilities not available from existing air and space platforms, and could be used in communications networks disaster relief and border protection at a fraction of the cost of satellites, BAE said in a statement. The plane, which went from proof of capability to testing in only 20 months, is underwritten by Britain's Science and Technology Laboratory and Australia's Defense Science and Technology Group, and built by BAE Systems and its subsidiary, Prismatic Ltd. Its flight trials were successfully completed at the Royal Australian Air Force Woomera Test Range in South Australia. "To go from design to flight in less than two years shows that we can rise to the challenge the U.K. government has set industry to deliver a Future Combat Air System within the next decade," said Ian Muldowney, engineering director at BAE Systems. Additional test are scheduled for later this year, with plans to enter initial operations with customers within 12 months. Airbus is among companies competing in the high-altitude, long-endurance category of planes, and in 2019 completed a 26-day test flight of its solar-powered Zephyr S "High Attitude Pseudo-Satellite." https://www.upi.com/Defense-News/2020/02/17/BAE-successfully-tests-solar-powered-high-altitude-plane

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