A modified design of PID controller for permanent magnet synchronous motor drives using particle swarm optimization

M. Baskin, Bulent Caglar
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引用次数: 8

Abstract

This paper presents the use of new particle swarm optimization (PSO) technique for tuning the PID speed controller adaptively for permanent magnet synchronous machine (PMSM) drives. The new PSO algorithm minimizes the integral square error of speed response for a PMSM drives. This algorithm uses a modified cost function that includes information about position following and overshoot error of the step response. Simulation results show that the controller that is tuned with this new PSO algorithm is superior to the traditionally tuned one in such a way that it has a smaller torque ripple and a smaller speed reference tracking error. Moreover, considering nonlinear structure of the inverter, optimization through actual system takes long time. In order to shorten the optimization time, new method that simplifies the current loop is applied.
基于粒子群算法的永磁同步电机PID控制器改进设计
本文利用粒子群优化技术对永磁同步电机的PID调速控制器进行自适应整定。新的粒子群算法使永磁同步电机的速度响应的平方误差最小。该算法使用了一个改进的代价函数,该函数包含了阶跃响应的位置跟随和超调误差信息。仿真结果表明,采用该算法调谐后的控制器具有更小的转矩脉动和更小的转速参考跟踪误差,优于传统调谐后的控制器。此外,考虑到逆变器的非线性结构,通过实际系统进行优化需要很长时间。为了缩短优化时间,采用了简化电流回路的新方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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