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Anti-disturbance Control for Flexible Spacecraft with Time-varying Input Delay

机译:具有时变输入延迟的柔性航天器的防扰控制

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This paper focuses on the anti-disturbance attitude control problem of flexible spacecraft with time-varying input delay. A composite hierarchical control structure is designed by combining delays-dependent H_∞ control with disturbance-observer-based control (DOBC). The proposed composite method not only can compensate the disturbances caused by flexible appendages but also can reduce the effects of delay on attitude control. Specially, a decomposition coefficient of delay integral inequality is introduced in the process of solving functional, which may further reduce the design algorithm conservatism. Finally, numerical simulations are used to verify the effectiveness of the proposed method and to show the effects of time delay bound and decomposition coefficient on the closed-loop system performance.
机译:本文重点介绍了具有时变输入延迟的柔性航天器的防扰态度控制问题。通过将延迟相关的H_∞控制与基于干扰观察者的控制(DOBC)组合来设计复合层次控制结构。所提出的复合方法不仅可以补偿由灵活的附属物引起的干扰,而且还可以减少态度控制延迟的影响。特别地,在解决功能的过程中引入了延迟积分不等式的分解系数,这可以进一步降低设计算法保守主义。最后,使用数值模拟来验证所提出的方法的有效性,并显示时间延迟绑定和分解系数对闭环系统性能的影响。

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