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Optimal placement and decentralized robust vibration control for spacecraft smart solar panel structures

机译:航天器智能太阳能电池板结构的最佳放置和分散鲁棒振动控制

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The decentralized robust vibration control with collocated piezoelectric actuator and strain sensor pairs is considered in this paper for spacecraft solar panel structures. Each actuator is driven individually by the output of the corresponding sensor so that only local feedback control is implemented, with each actuator, sensor and controller operating independently. Firstly, an optimal placement method for the location of the collocated piezoelectric actuator and strain gauge sensor pairs is developed based on the degree of observability and controllability indices for solar panel structures. Secondly, a decentralized robust controller is designed to suppress the vibration induced by external disturbance. Finally, a numerical comparison between centralized and decentralized control systems is performed in order to investigate their effectiveness to suppress vibration of the smart solar panel. The simulation results show that the vibration can be significantly suppressed with permitted actuator voltages by the controllers. The decentralized control system almost has the same disturbance attenuation level as the centralized control system with a bit higher control voltages. More importantly, the decentralized controller composed of four three-order systems is a better practical implementation than a high-order centralized controller is.
机译:本文针对航天器太阳能电池板结构,考虑了并置压电致动器和应变传感器对的分散鲁棒振动控制。每个执行器均由相应传感器的输出单独驱动,因此仅执行本地反馈控制,每个执行器,传感器和控制器均独立运行。首先,根据太阳能电池板结构的可观察性和可控性指标,开发了一种用于并置压电致动器和应变仪传感器对的最佳放置方法。其次,设计了一种分散鲁棒控制器来抑制外部干扰引起的振动。最后,在集中控制系统和分散控制系统之间进行了数值比较,以研究其抑制智能太阳能电池板振动的有效性。仿真结果表明,通过控制器允许的执行器电压,可以显着抑制振动。分散式控制系统几乎具有与集中式控制系统相同的干扰衰减水平,但控制电压更高。更重要的是,与四个高阶集中控制器相比,由四个三阶系统组成的分散控制器是更好的实际实现。

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