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A Composite Robust Fault-Tolerant Control Scheme for Limited-Thrust Spacecraft Rendezvous in Near-Circular Orbits

机译:用于近圆形轨道的有限推力航天器的复合鲁棒容错控制方案

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External perturbations and actuator faults are two practical and significant issues that deserve designers' considerations when synthesizing the controllers for spacecraft rendezvous. A composite robust fault-tolerant control (FTC) scheme that does not require the fault information is proposed in this paper for limited-thrust rendezvous in near-circular orbits. Within the control scheme, a reliable integral sliding mode (ISM) auxiliary controller and a modified guaranteed cost FTC are, respectively, developed to attenuate the external disturbances and to stabilize the nominal rendezvous system with actuator faults. Comparisons with previous works as well as a more practical and challenging simulation example are presented to verify the advantages of this composite control scheme.
机译:外部扰动和执行器故障是两个实际和重要的问题,如在合成航天器会合的控制器时代理设计师的考虑。 在本文中提出了一种不需要故障信息的复合鲁棒容错控制(FTC)方案,用于近圆形轨道中的有限推力。 在控制方案中,分别是一种可靠的整体滑动模式(ISM)辅助控制器和改进的保证成本FTC,以衰减外部干扰,并通过执行器故障稳定标称的Rendezvous系统。 提出了与先前作品的比较以及更实用和具有挑战性的仿真示例,以验证该复合控制方案的优点。

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