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Flight-Like Ground Demonstration of Precision Formation Flying Spacecraft

机译:类似地面示范的精密形成飞行宇宙飞船

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Initial high-fidelity, flight-like ground demonstrations of precision formation flying spacecraft are presented. In these demonstrations, maneuvers required for distributed spacecraft interferometry, such as for the Terrestrial Planet Finder Interferometer, were performed to near-flight precision,. Synchronized formation rotations for "on-the-fly" observations require the highest precision,. For this maneuver, ground demonstration performance requirements are 5 cm in relative position and 6 arc minutes in attitude. These requirements have been met for initial demonstrations of formation-keeping and synchronized formation rotations The maneuvers were demonstrated in the Formation Control Testbed (FCT). The FCT currently consists of two, five degree-of-freedom, air bear ing-levitated robots. The final sixth degree-of-freedom is being added in August 2007. Each robot has a suite of flight-like avionics and actuators, including a star tracker, fiber-optic gyroscopes, reaction wheels, cold-gas thrusters, inter-robot communication, and on-board computers that run the Formation and Attitude Control System (FACS) software.The FCT robots and testbed environment are described in detail. Then several initial demonstrations results are presented, including (i) a sub-millimeter formation sensor, (ii) an algorithm for synchronizing control cycles across multiple vehicles, (iii) formation keeping, (iv) reactive collision avoidance, and (iv) synchronized formation rotations.
机译:提出了最初的高保真,提出了精密地层飞行航天器的飞行地面演示。在这些演示中,对近飞行精度进行了分布式航天器干涉测量仪所需的演示,例如陆地行星发现者干涉仪。 “现场”观测的同步形成旋转需要最高的精度。对于这种机动,地面演示性能要求在相对位置5厘米,态度6分钟。已经满足了这些要求,用于形成保持和同步的形成旋转的初始演示,在地层控制测试平(FCT)中证明了操纵。 FCT目前由两种,五自由度组成,空气剥夺悬浮机器人。最终的第六次自由度是在2007年8月加入的。每个机器人都有一套类似的飞行航空电子设备和执行器,包括星形跟踪器,光纤陀螺仪,反应轮,冷气推进器,机器人间通信以及运行形成和姿态控制系统(FACS)软件的板载计算机。详细介绍了FCT机器人和测试平面的环境。然后提出了几种初始演示结果,包括(i)子 - 毫米形成传感器,(ii)一种用于在多辆车上同步控制周期的算法,(iii)形成保持,(iv)无功避免,(iv)同步形成旋转。

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