Japan designing flight controls, AI for fighter-support UAV

by Akhil Kadidal

Japan is developing an unmanned and autonomous combat aerial vehicle to support its sixth-generation F-X fighters in the future. The combat UAV is expected to team with the F-X in 2035. (Japanese Ministry of Defense)

A combat unmanned aerial vehicle (UAV) project being developed in Japan to support future manned fighter aircraft is undergoing advances to its flight control and artificial intelligence (AI) systems.

The country's Acquisition, Technology & Logistics Agency (ATLA) told Janes that it is designing the tactical flight-control and remote-control system of the unmanned aircraft using a manned aerial platform as a guide.

“Our plan is to test and evaluate those technologies with a subscale model UAV,” ATLA said. The agency added that research on the subscale UAV model began in 2019.

Tentatively known as the ‘combat support autonomous unmanned aerial vehicle', the project has been the focus of renewed funding in the 2022 Japan defence budget. Tokyo allocated JPY9.8 billion (USD77.461 million) to conduct a concept study.

According to ATLA, the concept study “consists of [the] computational simulation of several AI-controlled UAVs and some pilot-in-the-loop simulation for teaming with these UAVs”.


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RAF, RAAF reform respective 80 Sqns as US-based F-35 data centres

by Gareth Jennings

The chiefs of the RAF and RAAF reconstituting their respective 80 Squadrons during a joint ceremony at Eglin AFB in the US. (Crown Copyright)

The UK Royal Air Force (RAF) and the Royal Australian Air Force (RAAF) stood up their respective 80 Squadrons on 17 April to serve as US-based data units for the Lockheed Martin F-35 Lightning II Joint Strike Fighter (JSF).

Announced by the RAF, the two separate but linked squadrons were reconstituted during a joint ceremony at Eglin Air Force Base (AFB) in Florida.

“At the event, the [UK] Chief of the Air Staff, [Air Chief Marshal] Sir Richard Knighton, and [Australian] Chief of the Air Force Air Marshal Robert Chipman, formally awarded the dormant 80 Squadron number plates for each service to their respective teams within the Australia, Canada, and United Kingdom Reprogramming Laboratory [ACURL],” the RAF said.


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France touts new modular trainer aircraft with Spain, UK

by Gareth Jennings

With France having an approaching requirement to replace its Alpha Jets, the country has touted the possibility of a joint modular solution with Spain and the UK. (Janes/Patrick Allen)

France has raised the possibility of developing or acquiring a new modular advanced jet trainer aircraft with Spain and the United Kingdom.

Responding to a question in the National Assembly on 16 April, Minister of the Armed Forces Sébastien Lecornu said that, with France's Dassault/Dornier Alpha Jets nearing the end of their service lives, the country is considering a replacement tied to the future training requirements of its two European neighbours.

“Beyond 2032 … all solutions are conceivable and being studied, particularly with the United Kingdom and Spain,” the minister said, adding, “These solutions consist of developing or acquiring a modular aircraft that meets the needs of both [the Patrouille de France national aerobatic display team] and ‘Red Air', but also [other] aircraft, in the light of the [training requirement for the Future Combat Air System (FCAS)/Système de Combat Aérien du Futur (SCAF)] and its manned [aircraft component], the NGF [New Generation Fighter].”


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DRDO test-fires ‘Indigenous Technology Cruise Missile'

by Kapil Kajal

The ITCM (pictured above from its test on 18 April) is a technology demonstrator programme to validate the capability of small turbofan engines. (Indian Ministry of Defence)

India's state-owned Defence Research and Development Organisation (DRDO) test-fired its ‘Indigenous Technology Cruise Missile (ITCM)' from the Integrated Test Range (ITR) in Chandipur off the northeastern coast of Odisha, the Indian Ministry of Defence (MoD) said in a press release on 18 April.

“During the test, all subsystems performed as per expectation and the missile performance was monitored by several range sensors like radar, electro optical tracking system (EOTS), and telemetry deployed by [the] ITR at different locations to ensure complete coverage of the flightpath,” the MoD said.

The flight of the missile was also monitored from the Su-30-MKI aircraft of the Indian Air Force, the MoD added.

The missile followed the desired path using “waypoint navigation and demonstrated very-low-altitude sea-skimming flight”, according to the MoD.

“This successful flight test has also established the reliable performance of the indigenous propulsion system developed by the Gas Turbine Research Establishment (GTRE), Bengaluru,” the MoD said.


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A combat unmanned aerial vehicle (UAV) project being developed in Japan to support future manned fig...

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