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Tuning strategy of fractional-order proportional integral controllers for permanent magnet synchronous motor servo system based on enhanced stochastic multi-parameters divergence-based optimisation algorithm

机译:基于增强型随机多参数发散优化算法的永磁同步电动机伺服系统分数阶比例积分控制器的整定策略

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摘要

This study concentrates on the study of optimisation-based tuning method of fractional-order proportional integral (PIλ or FOPI) controller, and the application of FOPI controller in permanent magnet synchronous motor servo drive system. The main contribution lies in two aspects: (i) A practical FOPI tuning method is proposed. The tuning method formulates a non-linear optimisation problem by maximising the closed-loop bandwidth with constraints on complementary sensitivity, and gain and phase margin. Compared with the existing FOPI tuning strategies, the proposed method is suitable for both integer order and fractional order control systems and, it fully considers the stability requirement of the servo system. (ii) An enhanced stochastic multi-parameters divergence-based optimisation (SMDO) algorithm is presented to solve the non-linear optimisation problem in the FOPI tuning. The enhanced SMDO has the advantages of easy to implement, effective for fast convergence to minima, stochastic in nature and simple adaption to real-time application. Compared with the traditional SMDO method, enhanced SMDO owns faster convergence speed and better global search ability. Experiments are presented to demonstrate the effectiveness of the proposed tuning method and enhanced SMDO algorithm.
机译:本研究着重研究基于优化的分数阶比例积分(PIλ或FOPI)控制器的整定方法,以及FOPI控制器在永磁同步电机伺服驱动系统中的应用。主要贡献在于两个方面:(i)提出了一种实用的FOPI调整方法。该调整方法通过在互补灵敏度,增益和相位裕度的约束下最大化闭环带宽来制定非线性优化问题。与现有的FOPI调整策略相比,该方法适用于整数阶和分数阶控制系统,并且充分考虑了伺服系统的稳定性要求。 (ii)提出了一种改进的随机多参数基于发散的优化算法(SMDO),以解决FOPI调整中的非线性优化问题。增强型SMDO的优点是易于实施,有效地快速收敛到最小值,本质上是随机的并且易于适应实时应用。与传统的SMDO方法相比,增强型SMDO具有更快的收敛速度和更好的全局搜索能力。实验表明,该方法和改进的SMDO算法是有效的。

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