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A Hybrid Differential Artificial Bee Algorithm based tuning of fractional order controller for PMSM drive

机译:基于混合微分人工蜜蜂算法的PMSM驱动分数阶控制器调整

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This article proposes a novel Hybrid Differential Artificial Bee Colony Algorithm (HDABCA), which combines Differential Evolution with Artificial Bee Colony Algorithm (ABCA), for designing the fractional order proportional-integral controller (FO-PI) in a surface-mounted Permanent Magnet Synchronous Motor (PMSM) drive. FOPI controllers' parameters involve proportionality constant, integral constant and integral order, and hence its design is more intricate than that of usual integral-order proportional-integral controller. Here the synthesis of controller is done according to the objective function considered. In order to digitally realize the fractional order PI controller, an Oustaloup approximation method is used. Simulations and comparisons of proposed HD-ABCA with conventional methods demonstrate the superiority of the proposed approach, especially for actuating fractional order plants.
机译:本文提出了一种新颖的混合差分人工蜂群算法(HDABCA),该算法将差分进化与人工蜂群算法(ABCA)相结合,用于设计表面安装永磁同步器中的分数阶比例积分控制器(FO-PI)。电动机(PMSM)驱动器。 FOPI控制器的参数涉及比例常数,积分常数和积分阶数,因此其设计比常规积分阶比例-积分控制器的设计更为复杂。在这里,控制器的综合是根据所考虑的目标函数完成的。为了数字地实现分数阶PI控制器,使用了Oustaloup逼近方法。拟议的HD-ABCA与常规方法的仿真和比较证明了拟议方法的优越性,特别是对于驱动分数阶设备。

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