首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Antidisturbance Fault Tolerant Control of Attitude Control Systems for Microsatellite with Unknown Input Delay
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Antidisturbance Fault Tolerant Control of Attitude Control Systems for Microsatellite with Unknown Input Delay

机译:输入延迟未知的微卫星姿态控制系统的抗干扰容错控制

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The antidisturbance fault tolerant control problem of attitude control systems for microsatellite is investigated in the presence of unknown input delay, stuck faults from the reaction wheel and the multiple disturbances. The multiple disturbances are supposed to include the vibration disturbance torque from the reaction wheel and modeling uncertainties. The fault diagnosis observer and disturbance observer are constructed to estimate stuck faults and vibration disturbance torque from the reaction wheel, respectively. A composite fault tolerant controller is designed by combining a PID controller, the fault accommodation estimation based on the fault diagnosis observer, and the disturbance compensator based on the disturbance observer. The controller and observer gains can be easily obtained via a set of linear matrix inequalities. Simulation results are given to show that the faults can be accommodated readily, and the disturbances can be rejected and attenuated simultaneously.
机译:研究了未知输入时延,反作用轮卡死故障和多重扰动情况下微卫星姿态控制系统的抗干扰容错控制问题。多重干扰应该包括来自反作用轮的振动干扰转矩和模型不确定性。故障诊断观察器和扰动观察器构造成分别估计反作用轮的卡住故障和振动扰动转矩。通过组合PID控制器,基于故障诊断观测器的故障容纳估计和基于干扰观测器的干扰补偿器,设计了复合容错控制器。控制器和观察者的增益可以通过一组线性矩阵不等式轻松获得。仿真结果表明,故障可以很容易地得到解决,扰动可以同时被抑制和衰减。

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