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A Fault Detection, Isolation and Reconstruction Strategy for a Satellite's Attitude Control Subsystem with Redundant Reaction Wheels

机译:冗余反应轮卫星姿态控制子系统的故障检测,隔离与重建策略

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In time-critical systems such as spacecraft systems, fault detection and isolation requirements are of paramount importance and necessity. This paper uses a second order nonlinear sliding mode observer to detect actuator faults in the attitude control subsystem of a satellite with four reaction wheels in a tetrahedron configuration. Through a postprocessing of residual signals it is shown how to isolate and reconstruct the faults in all four reaction wheels. Simulation results show that the proposed strategy can successfully detect, isolate and reconstruct reaction wheel faults.
机译:在诸如航天器系统,故障检测和隔离要求之类的时间关键系统中是至关重要的和必要性的。本文采用二阶非线性滑动模式观察者来检测卫星姿态控制子系统的致动器故障,具有四面板结构的四个反应轮。通过后处理残余信号,显示了如何隔离和重建所有四个反应轮中的故障。仿真结果表明,该策略可以成功检测,隔离和重建反应轮缺陷。

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