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Fault detection and recovery of spacecraft formation flying using nonlinear observer and reconfigurable controller

机译:使用非线性观测器和可重构控制器的航天器编队飞行故障检测与恢复

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摘要

This paper addresses fault tolerant spacecraft leader-follower formation control through the development of a fault observer and a re-configurable control law. Using carrier-phase differential GPS measurements for relative position and velocity, an estimate of the true thrust output on all three axes of the follower spacecraft is accomplished using a pair of super twisting sliding mode observers. Modifications on the 'broken' super twisting observer are applied in order to accommodate additional sensor feedback inputs for relative position and velocity between the leader and the follower spacecraft. A fault observer estimating the true thrust output of the follower spacecraft is developed which functions in parallel with a re-configurable control law capable of formation maintenance in the event thrust in the along-track and radial axes are no longer available. Simulation results show fault reconstruction and recovery with formation stabilization even in the presence of external disturbances which are unknown to both the controller and the observer.
机译:本文通过故障观察器和可重构控制律的发展,探讨了容错航天器的前随从编队控制。通过使用载波相位差分GPS测量的相对位置和速度,可以使用一对超级扭曲滑模观测器来估算从动飞船所有三个轴上的真实推力输出。为了适应额外的传感器反馈输入,需要对“破损”的超扭曲观测器进行修改,以获取引导者和跟随者航天器之间的相对位置和速度。开发了一种估算跟随器航天器的真实推力输出的故障观测器,该观测器与可重新配置的控制定律并行运行,该控制定律在沿轨道和径向轴的推力不再可用时能够维持地层。仿真结果表明,即使存在控制器和观察者都不知道的外部干扰,故障重构和恢复仍能保持地层稳定。

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