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Minimal overshoot direct torque control for permanent magnet synchronous motors using Hybrid Bacteria Foraging-Particle Swarm Optimization

机译:使用杂种细菌觅食粒子群优化永磁同步电机的永磁同步电动机最小的过冲直接扭矩控制

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This paper presents a robust torque, flux and speed controller's design method for permanent magnet synchronous motor (PMSM) drive using Direct Torque Control (DTC). A simple algorithm is presented to adjust the parameters of torque, flux and speed controllers. This mini-max optimization problem is solved using Hybrid Bacteria Foraging-Particle Swarm Optimization Approach (BF-PSO). The solution thus obtained is global optimal and robust. The proposed technique eliminates common problems including; torque ripples, low speed and integration drift. As well as it characterized by fast tracking capability, minimal overshoot responses, and robust to load disturbances and low speed operation. Results prove the effectiveness and viability of the proposed technique.
机译:本文采用直接扭矩控制(DTC)呈现了一种坚固的扭矩,焊剂和速度控制器的永磁同步电动机(PMSM)驱动器的设计方法。 提出了一种简单的算法来调整扭矩,通量和速度控制器的参数。 使用杂种细菌觅食粒子群综合优化方法(BF-PSO)解决了该迷你最大优化问题。 由此获得的解决方案是全球最佳和稳健的。 所提出的技术消除了常见问题,包括; 扭矩涟漪,低速和集成漂移。 以及其特征在于快速跟踪能力,最小的过冲响应,以及负载扰动和低速操作的鲁棒性。 结果证明了所提出的技术的有效性和可行性。

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