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Modeling and Simulating of PMSM Space Vector PWM Drive System Based on Fuzzy Immune PI Control Method

机译:基于模糊免疫PI控制方法的PMSM空间矢量PWM驱动系统建模与仿真

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In order to improve the speed control performance of the PMSM(Permanent magnet synchronous motor) vector control system. Utilizing the mathematical model of the PMSM in the dq0 coordinates, and the basic principles of the SVPWM (Space Vector Pulse Width Modulation) control method, a simulation model of the PMSM Space Vector Control System, which contains the double loop of speed and current, has been constructed based on the MATLAB/SIMULINK simulation environment. According to the artificial immune feedback theory and the approximation of the nonlinear function in the immune feedback system, with the help of fuzzy logic, a fuzzy immune PI controller has been made and harnessed in the speed loop. Under the three conditions: steady load startup, speed abrupt change, and load abrupt change, a series of contradistinctive simulation experiments are conducted and compared with the original PI controller respectively. The experimental results showed that the SVPWM control method with the fuzzy immune PI controller can not only make the motor run steadily, but also give it a superior speed performance and torque control characteristics. In addition, the control performance of the fuzzy immune PI controller showed a dramatically improvement compared with that of the traditional PI controller.
机译:为了提高PMSM(永磁同步电动机)矢量控制系统的速度控制性能。利用DQ0坐标中PMSM的数学模型,以及SVPWM(空间矢量脉冲宽度调制)控制方法的基本原理,PMSM空间矢量控制系统的仿真模型,其中包含速度和电流的双循环,已基于MATLAB / SIMULINCINT仿真环境构建。根据人工免疫反馈理论和免疫反馈系统中非线性功能的近似,借助于模糊逻辑,已经制造了模糊免疫PI控制器并在速度环中利用。在三个条件下:稳定载荷启动,速度突然变化和负载突变变化,分别与原始PI控制器进行了一系列反对仿真实验。实验结果表明,具有模糊免疫PI控制器的SVPWM控制方法不仅可以使电机稳定地运行,而且还使其提供了卓越的速度性能和扭矩控制特性。此外,与传统PI控制器相比,模糊免疫PI控制器的控制性能显示出显着改善。

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