柔性航天器整体变结构/输入整形控制

Q. Hu, G. Ma, Zhong Shi
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引用次数: 5

摘要

设计了一种新型的柔性附件轨道飞行器旋转机动与减振混合控制系统。该控制系统包括采用积分变结构控制(IVSC)思想设计的姿态控制器和采用输入整形技术设计的柔性减振器。该混合控制方案的合理性在于,即使在存在参数变化、不确定性和/或干扰的情况下,积分变结构控制器也能实现良好的指向精度,而形状输入衰减器则能主动抑制由快速机动引起的不良振动。该控制系统的另一个吸引人的特点是它将脉宽脉频(PWPF)调制器与输入整形器集成在一起,以实现柔性航天器的减振。仿真结果表明,该模型具有良好的姿态控制和振动抑制效果
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integral variable structure/input shaping control of flexible spacecraft
A new hybrid control system for the rotational maneuver and vibration suppression of an orbiting spacecraft with flexible appendage is designed. The proposed control system includes the attitude controller designed by integral variable structure control (IVSC) concept, and flexible vibration attenuator designed by input shaping technique. The rational for this hybrid control scheme is that the integral variable structure controller can achieve good precision pointing, even in the presence of parameter variations, uncertainties, and/or disturbances, whereas the shaped input attenuator is applied to actively suppress the undesirable vibrations excited by the rapid maneuvers. An additional attractive feature of the control system is that it integrates the pulse-width pulse-frequency (PWPF) modulator with the input shaper to accomplish the vibration reductions for the flexible spacecraft. Numerical simulation results for the spacecraft model show precise attitude control and vibration suppression
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