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Robust tracking system design for a synchronous reluctance motor - SynRM based on a new modified bat optimization algorithm

机译:基于新改进的BAT优化算法的同步磁阻电机 - Synrm的鲁棒跟踪系统设计

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This paper discusses optimal controller structure design for a Synchronous Reluctance Motor (SynRM). Optimization of controller parameters is based on a new modified BAT optimization algorithm (mBAT). SynRM is represented with a nonlinear dynamic model of a synchronous machine. All gathered nonlinearities of SynRM are taken into account in the controller's design and optimization procedure with mBAT. A novel SynRM controller structure with a modified robust disturbance observer (mRDO) is presented. The modified mRDO ensures a higher level of stability margin, efficient disturbance rejection, and enables transparent controller parametrization and optimization. Controller synthesis is based on robust H-infinity pole-placement technique. The H(infinity )robust criteria are presented in the form of spectral polynomials and their strong positivity conditions. Spectral polynomials (SP) can be directly used as objective functions in the mBAT optimization procedure. The mBAT algorithm, in terms of the derived SP introduces a novel approach to adaptive weighting function selection and modification of BAT velocity in the position formula. The new modification of the BAT algorithm is inspired by feedback control theory and Lyapunov exponential stability property. The proposed modification of the mBAT significantly increases the efficiency of the given optimization problem. (C) 2018 Elsevier B.V. All rights reserved.
机译:本文讨论了同步磁阻电机(SYNRM)的最佳控制器结构设计。控制器参数的优化基于新的修改BAT优化算法(MBAT)。 Synrm用同步机的非线性动态模型表示。在控制器的设计和MBAT的优化过程中,考虑到SYNRM的所有收集的非线性。提出了一种具有改进的强大干扰观察者(MRDO)的新型Synrm控制器结构。改进的MRDO确保了更高水平的稳定性裕度,有效的扰动抑制,并实现了透明的控制器参数化和优化。控制器合成基于鲁棒H-Infinity杆子放置技术。 H(Infinity)稳健的标准以光谱多项式的形式及其强的正极性条件呈现。光谱多项式(SP)可以直接用作MBAT优化过程中的客观功能。在衍生的SP方面,MBAT算法引入了一种新的自适应加权函数选择和蝙蝠速度在位置公式中的修改方法。 BAT算法的新修改是通过反馈控制理论和Lyapunov指数稳定性的启发。拟议的MBAT修改显着提高了给定优化问题的效率。 (c)2018 Elsevier B.v.保留所有权利。

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