21 août 2024 | International, Aérospatial

Aircraft carrier Bush gets first-ever Stingray drone control room

The carrier George H.W. Bush is now the host of an unmanned air warfare center, and more carriers are getting it soon.

https://www.defensenews.com/news/your-navy/2024/08/21/bush-aircraft-carrier-gets-first-ever-stingray-air-drone-control-room/

Sur le même sujet

  • Turkish Drones Destroy Russian-Made Air Defense Systems

    9 mars 2020 | International, Aérospatial

    Turkish Drones Destroy Russian-Made Air Defense Systems

    On Friday, a missile fired by a Turkish drone destroyed a Russian-made Pantsir-S1 deployed by the Syrian Army in Idlib province. This video released by Turkish media, shows an active Syrian Pantsir being destroyed by a Turkish drone. According to Turkish media, the Pantsir radar was active when it was hit, indicating that the system failed to detect the incoming missile. The Syrian Air Defense Force reportedly has more than 30 $14 million Pantsir S1 (SA-22) air defense systems. Russia has also strengthened its Syrian Khmeimim air base with Pantsir systems to prevent air strikes. The systems were deployed in Khmeimim after a series of drone attacks in 2018. Combat unmanned aerial vehicles used by the Turkish military against the Syrian army led to Syria's largest losses, according to the Turkish Ministry of Defense. After Turkey started using drones against the Syrian Armed Forces, Assad's army has lost about a hundred units of armoured vehicles and several hundred military personnel. Russian news outlet Avia.pro writes that, for unknown reasons, Turkish drones are invisible to Syrian air defense systems. According to the news outlet, Pantsir radars are possibly “blinded” by Turkish electronic warfare systems. Reportedly, Turkey has been using it Koral jamming system built by Aselsan, to degrade the effectiveness of Syrian air defense radars. The Koral, which has a range of 124 miles, has support sensors designed to detect and classify other systems in the area, and an electronic attack element designed to jam, deceive and overload enemy sensors The Turkish drones are reportedly using MAM-C and MAM-L ‘micro-munitions'—70- and 160-millimeter rockets respectively, weighing only 14 and 48.5 pounds designed to strike targets illuminated by a laser. These can carry high explosive, armour-penetrating shaped charges, or (on the MAM-L) lung-rupturing thermobaric warheads, while remaining light enough to mount on relatively small drones. The larger MAM-L can also extend range from 5 to 8.6 miles by using GPS or inertial guidance. Syrian air defenses have managed to shoot down at least three Turkish Anka-S drones in February, and Damascus claims as many as six. As these are larger and newer drones, their loss may be keenly felt, but obviously less so than manned aircraft. https://www.uasvision.com/2020/03/06/turkish-drones-destroy-russian-made-air-defense-systems/

  • Spain, Belgium promise multibillion-dollar military aid for Ukraine

    28 mai 2024 | International, Aérospatial

    Spain, Belgium promise multibillion-dollar military aid for Ukraine

    Ukrainian forces are in line to receive some air-defense capabilities from Madrid, as Russian troops step up their attacks on population centers.

  • Lockheed To Migrate F-35 Backbone To Cloud Architecture

    13 septembre 2019 | International, Aérospatial

    Lockheed To Migrate F-35 Backbone To Cloud Architecture

    Lee Hudson and Steve Trimble Lockheed Martin intends to migrate its F-35 digital support backbone, the Autonomic Logistics Information System (ALIS), to a native-cloud architecture by year's end and field it in 2020. A joint government and industry team tested an early version of the new framework in both lab and flight test environments in May, company spokesman Mike Friedman said in a Sept. 11 statement to Aerospace DAILY. “By moving all ALIS applications to a cloud-native, open architecture, we can rapidly develop and test pieces of ALIS without having to load the entire system for each upgrade,” he said. “And instead of aggregating many fixes over a 12- to 18-month period into a single upgrade, the new approach allows developers to create, test, receive feedback and implement fixes every few weeks while reducing development and fielding costs.” The new construct still must be tested in an operational environment so that developers can garner user feedback to refine their approach. Separately, the newest ALIS software release, 3.1.1, is saving pilots an average of 35 min. in report generation and review. The new software release also is saving maintainers 40 min. each day in report generation and several hours weekly in managing fleet directive reports, he added. “This latest release leverages the development work Lockheed Martin completed in 2018 with its internal investment funding,” Friedman said. “In 2018, Lockheed Martin invested approximately $50 million in ALIS and will continue investing approximately $180 million through 2021 to modernize ALIS and enhance enterprise sustainment systems.” Extrapolated across the enterprise of more than 425 aircraft flying today, it will save more than 20,000 manhours annually. Lockheed Martin has invested in additional time saving and efficiency ALIS automations and is working with the government on implementation and fielding plans, Friedman said. https://aviationweek.com/defense/lockheed-migrate-f-35-backbone-cloud-architecture

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