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The Boeing Insitu RQ-21 Blackjack, company name Integrator, is an American unmanned air vehicle designed and built by Boeing Insitu to meet a United States Navy requirement for a small tactical unmanned air system (STUAS). [6] It is a twin-boom, single-engine monoplane, designed as a supplement to the Boeing Scan Eagle. [6]
The Boeing Insitu ScanEagle is a small, long-endurance, low-altitude unmanned surveillance and reconnaissance aerial vehicle built by Insitu, a subsidiary of Boeing, and is used for reconnaissance. [1] [2] The ScanEagle was designed by Insitu based on the Insitu SeaScan, a commercial UAV that was intended for fish-spotting. The ScanEagle ...
Insitu, with the U.S. Navy, developed the RQ-21A Blackjack to fill the requirement for a small tactical UAS capable of operating from both land and sea. [13] The Integrator is the standard variant of the RQ-21A. Insitu's UAVs are launched via a pneumatic catapult launcher and are recovered using the SkyHook recovery system. [4]
On 5 March 2012, the U.S. Special Operations Command (SOCOM) awarded AAI a contract to provide the Aerosonde-G for their Mid-Endurance UAS II program. The catapult-launched air vehicle has a takeoff weight 34.1 or 36 kg (75 or 79 lb) depending on engine type, with endurance of over 10 hours and an electro-optic/infrared and laser-pointer payload. [4]
Aerovel Corporation was founded in 2006 by Dr. Tad McGeer, a designer of unmanned aerial systems (UAS) at various companies for more than 25 years. [1] McGeer co-founded The Insitu Group in 1992, where he was the architect of Aerosonde, SeaScan and ScanEagle. Aerovel Flexrotor is the next evolution in McGeer's line of unmanned aerial systems.
Subsequently, the FAA issued “the Integration of Civil Unmanned Aircraft Systems (UAS) in the National Airspace System (NAS) Roadmap”. [4] As of 2014, obtaining an experimental airworthiness certificate for a particular UAS is the way civil operators of unmanned aircraft are accessing the National Airspace System of the United States. [61]
Unmanned aircraft system traffic management (UTM) is an air traffic management ecosystem under development for autonomously controlled operations of unmanned aerial systems (UAS) by the FAA, NASA, other federal partner agencies, and industry. They are collaboratively exploring concepts of operation, data exchange requirements, and a supporting ...
The OSRVT is a portable system consisting of a radio transceiver, laptop, antennas, and software to communicate with the UAV and receive video and other data from it. Control of the sensor payload is UAS level of Interoperability 3, a step below control of flight through MUM-T. [23]