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Covaraince Matrix Adapted Evolutionary Strategy based design of robust optimal fixed structure controller

机译:基于协方差矩阵自适应进化策略的鲁棒最优固定结构控制器设计

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In this paper, Covariance Matrix Adapted Evolution Strategy (CMAES) algorithm based design of robust optimal fixed structure controllers for systems with uncertainties and disturbance is addressed. PID controller and second order polynomial structure are considered for fixed structure controller. The design problem is formulated as minimization of maximum value of real part of the poles subject to the robust stability criteria and load disturbance attenuation criteria. The performance of proposed method is demonstrated with two test systems. For the purpose of comparison, already reported results of constrained PSO method are considered. Owing to the randomness of the evolutionary algorithms, 10 trials with independent population initializations are made to acquire a useful conclusion of the performance of the algorithms. It is shown experimentally that the performance of the CMAES-based method is superior to constrained PSO methods in terms of success rate, robust stability, and disturbance attenuation.
机译:本文针对具有不确定性和干扰的系统,提出了一种基于协方差矩阵自适应进化策略(CMAES)算法的鲁棒最优固定结构控制器设计。对于固定结构控制器,应考虑使用PID控制器和二阶多项式结构。将设计问题表述为在满足鲁棒稳定性标准和负载扰动衰减标准的情况下最小化磁极实部的最大值。通过两个测试系统证明了所提出方法的性能。为了进行比较,考虑了已报告的约束PSO方法的结果。由于进化算法的随机性,进行了10次具有独立种群初始化的试验,以得出有关算法性能的有用结论。实验表明,基于CMAES的方法的性能在成功率,鲁棒稳定性和干扰衰减方面均优于受约束的PSO方法。

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