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Tuning of fractional order PID with master-slave stochastic multi-parameter divergence optimization method

机译:主从随机多参数发散优化方法对分数阶PID的整定

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摘要

This paper presents master-slave stochastic multi-parameters divergence optimization (SMDO) method for tuning of fractional order proportional-integral-derivative (FOPID) controllers. Bode's ideal control loop (BICL) is used as a reference model that guides the optimization process. Master-slave SMDO performs optimization of FOPID and BICL parameters together. In the first stage called as locking, step responses of FOPID and BICL approximate each other. In the second stage called as drifting, BICL guides tuning of the FOPID towards a desired step response. One of the advantages of presented optimization approach is that both optimization of the reference model (BICL) and controller (FOPID) cooperates and the tuning of FOPID is governed by BICL in the drifting stage. Operation and performance of the proposed algorithm are demonstrated by simulation examples.
机译:本文提出了一种用于调整分数阶比例-积分-微分(FOPID)控制器的主从随机多参数发散优化(SMDO)方法。波特的理想控制回路(BICL)被用作指导优化过程的参考模型。主从SMDO一起执行FOPID和BICL参数的优化。在称为锁定的第一阶段,FOPID和BICL的阶跃响应彼此近似。在称为漂移的第二阶段,BICL引导FOPID朝着所需的阶跃响应方向调谐。提出的优化方法的优点之一是参考模型(BICL)和控制器(FOPID)的优化协同工作,并且在漂移阶段由BICL控制FOPID的调整。仿真实例证明了该算法的运行和性能。

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