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Design and Autonomous Stabilization of a Ballistically Launched Multirotor

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arxiv 1911.10269 v2 pith:ZDMDMXCM submitted 2019-11-22 eess.SY cs.ROcs.SY

classification eess.SYcs.ROcs.SY
keywords autonomousballisticallymultirotorautonomouslylaunchlaunchedonboardpassive
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Aircraft that can launch ballistically and convert to autonomous, free flying drones have applications in many areas such as emergency response, defense, and space exploration, where they can gather critical situational data using onboard sensors. This paper presents a ballistically launched, autonomously stabilizing multirotor prototype (SQUID, Streamlined Quick Unfolding Investigation Drone) with an onboard sensor suite, autonomy pipeline, and passive aerodynamic stability. We demonstrate autonomous transition from passive to vision based, active stabilization, confirming the ability of the multirotor to autonomously stabilize after a ballistic launch in a GPS denied environment.

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