基于预测滤波器的反力轮故障控制器重构

Ji Li, Hong-Yue Zhang
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引用次数: 2

摘要

反作用轮是卫星姿态控制系统的主要执行机构。如果四个反作用轮中有一个发生机械故障,应迅速发现,并需要重新配置控制器,以便使用健康的反作用轮恢复三轴控制。为了实现容错控制,采用预测滤波器获取状态和故障信息。将车轮上的实际反力扭矩作为未知输入,可以通过带状态的预测滤波器进行估计。基于该算法可以对车轮故障进行诊断。本文提出了一种基于预测滤波器的控制器重构结构,并通过对某卫星三轴稳定姿态控制系统的仿真验证了该方法的有效性
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Controller reconfiguration against reaction wheel failure based on predictive filters
Reaction wheels are main actuators of satellite attitude control systems. If a mechanical failure of one out of four reaction wheels occurs, it should be detected quickly and the controller need be reconfigured to restore three-axis control using healthy reaction wheels. To realize fault tolerant control, a predictive filter is applied to obtain information of states and faults. Considering the actual reaction torques on wheels as unknown inputs, they can be estimated by a predictive filter with states. Based on this algorithm wheel faults can be diagnosed. In this paper, a controller reconfiguration structure using a predictive filter is presented and the usefulness of this method is illustrated by a simulation to a three-axis stable attitude control system of a satellite
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