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Discrete-Time 2-Order Sliding Mode Fault-Tolerant Tracking Control for Non-Gaussian Nonlinear Stochastic Distribution Control Systems with Missing Measurements

机译:具有缺失测量的非高斯非线性随机分配控制系统的离散时间2级滑动模式容错跟踪控制

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In this paper, a method of fault diagnosis (FD) and fault-tolerant tracking control (FTTC) is investigated for non-Gaussian nonlinear stochastic distribution control (SDC) systems with missing measurements. The phenomenon of the randomly occurring missing measurements is described as a Bernoulli process. The missing measurements during transmission are compensated with the data successfully transmitted at the previous moment. The residual signal of the fault diagnosis observer is different from that of the general system. Using the integral of the error of the output probability density function (PDF) as the driving information, the system state and fault can be estimated by an adaptive fault diagnosis observer. Then, a novel fault-tolerant tracking controller is designed based on a discrete-time 2-order sliding mode to make the post-fault PDF still track the target. Two simulated examples are included to illustrate the effectiveness of the theoretical results.
机译:本文研究了一种故障诊断(FD)和容错跟踪控制(FTTC)的方法,用于具有缺失测量的非高斯非线性随机分布控制(SDC)系统。随机发生的缺失测量的现象被描述为Bernoulli过程。传输过程中缺失的测量值由前一刻成功传输的数据进行补偿。故障诊断观察者的残余信号与一般系统的剩余信号不同。使用输出概率密度函数(PDF)的误差的积分作为驱动信息,可以通过自适应故障诊断观察者估计系统状态和故障。然后,基于离散时间2级滑动模式设计了一种新型容错跟踪控制器,以使故障后PDF仍然跟踪目标。包括两个模拟示例以说明理论结果的有效性。

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  • 来源
    《Complexity》 |2020年第1期|共13页
  • 作者

    Lifan Li; Lina Yao;

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