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Fault diagnosis method for closed-loop satellite attitude control systems based on a fuzzy parity equation:

机译:基于模糊奇偶方程的闭环卫星姿态控制系统故障诊断方法:

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This article proposes a fault diagnosis method for closed-loop satellite attitude control systems based on a fuzzy model and parity equation. The fault in a closed-loop system is propagated with the feedback loop, increasing the difficulty of fault diagnosis and isolation. The study uses a Takagi-Sugeno (T-S) fuzzy model and parity equation to diagnose and isolate a fault in a closed-loop satellite attitude control system. A fully decoupled parity equation is designed for the closed-loop satellite attitude control system to generate a residual that is sensitive only to a specific actuator and sensor. A T-S fuzzy model is used to describe the nonlinear closed-loop satellite attitude control system. With the combination of the T-S fuzzy model and fully decoupled parity equation, the fuzzy parity equation (FPE) of the nonlinear system can be obtained. Then this article uses a parameter estimator based on a Kalman filter to identify deviations and scale factor changes from information contained in the residuals generated by the FPE. The actuator and sensor fault detection and isolation simulation of the three-axis stable satellite attitude control system is provided for illustration.
机译:提出了一种基于模糊模型和奇偶校验方程的闭环卫星姿态控制系统故障诊断方法。闭环系统中的故障通过反馈回路传播,从而增加了故障诊断和隔离的难度。该研究使用Takagi-Sugeno(T-S)模糊模型和奇偶校验方程来诊断和隔离闭环卫星姿态控制系统中的故障。为闭环卫星姿态控制系统设计了完全解耦的奇偶方程,以生成仅对特定执行器和传感器敏感的残差。用T-S模糊模型描述非线性闭环卫星姿态控制系统。通过将T-S模糊模型与完全解耦的奇偶方程相结合,可以得到非线性系统的模糊奇偶方程(FPE)。然后,本文使用基于卡尔曼滤波器的参数估计器,根据FPE生成的残差中包含的信息识别偏差和比例因子变化。为了说明,提供了三轴稳定卫星姿态控制系统的执行器和传感器故障检测以及隔离仿真。

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