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Design of Robust Approach for Failure Detection in Dynamic Control Systems

机译:动态控制系统故障检测的鲁棒方法设计

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This paper presents a robust instrument fault detection (1FD) scheme based on modified immune mechanism based evolutionary algorithm (MIMEA) that determines on line the optimal control actions, detects faults quickly in the control process, and reconfigures the controller structure. To ensure the capability of the proposed MIMEA, repeating cycles of crossover, mutation, and clonally selection are included through the sampling time. This increases the ability of the proposed algorithm to reach the global optimum performance and optimize the controller parameters through a few generations. A fault diagnosis logic system is created based on the proposed algorithm, nonlinear decision functions, and its derivatives with respect to time. Threshold limits are implied to improve the system dynamics and sensitivity of the IFD scheme to the faults. The proposed algorithm is able to reconfigure the control law safely in all the situations. The presented false alarm rates are also clearly indicated. To illustrate the performance of the proposed MIMEA, it is applied successfully to tune and optimize the controller parameters of the nonlinear nuclear power reactor such that a robust behavior is obtained. Simulation results show the effectiveness of the proposed IFD scheme based MIMEA in detecting and isolating the dynamic system faults.
机译:本文提出了一种基于改进的基于免疫机制的进化算法(MIMEA)的鲁棒仪器故障检测(1FD)方案,该方案在线确定最佳控制措施,在控制过程中快速检测故障,并重新配置控制器结构。为了确保建议的MIMEA的功能,在采样时间内包括了重复的交叉,变异和克隆选择循环。这提高了提出的算法达到全局最佳性能并经过几代人优化控制器参数的能力。基于提出的算法,非线性决策函数及其随时间变化的导数,创建了一个故障诊断逻辑系统。暗示阈值限制以改善系统动态性和IFD方案对故障的敏感性。所提出的算法能够在所有情况下安全地重新配置控制律。所提供的错误警报率也得到了明确指示。为了说明所提出的MIMEA的性能,已成功地将其应用到调谐和优化非线性核动力反应堆的控制器参数,从而获得了鲁棒的性能。仿真结果表明,所提出的基于MIMEA的IFD方案在检测和隔离动态系统故障方面是有效的。

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