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Fault Tolerant PID Control based on Software Redundancy for Nonlinear Uncertain Processes

机译:基于软件冗余的非线性不确定过程的容错PID控制

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The fault diagnosis and close-loop tolerant PID control for nonlinear multi-variables system under multiple sensor failures are investigated in the paper. A complete FDT architecture based on software redundancy is proposed to efficiently handle the fault diagnosis and the accommodation for multiple sensor failures in online situations. The methods colligates the adaptive threshold technique with the envelope and weighting moving average residual to detect multi-type sensor fault, use fault propagation technique, variable structure analyzing technique and neural network techniques to online reconstruct sensor signal, and achieves the tolerant PID control through recombining feedback loop of PID controller. The three-tank with multiple sensor fault concurrence is simulated, the simulating result shows that the fault detection and tolerant control strategy has stronger robustness and tolerant fault ability.
机译:在纸上研究了多个传感器故障下非线性多变量系统的故障诊断和闭环容差PID控制。提出了一种基于软件冗余的完整FDT架构,以有效地处理在线情况下的多个传感器故障的故障诊断和住宿。该方法将自适应阈值技术展示了包络和加权移动平均剩余物体检测多型传感器故障,使用故障传播技术,可变结构分析技术和神经网络技术在线重建传感器信号,并通过重新组合实现容忍PID控制PID控制器的反馈循环。模拟具有多个传感器故障并发的三箱,模拟结果表明,故障检测和耐受控制策略具有更强的鲁棒性和耐受性的故障能力。

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