Simulation on parallel drive system of double Switched Reluctance motors based on sliding mode & fuzzy controllers

H. Chen, X. Wang, J. Gu, Q. Song
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引用次数: 6

Abstract

The paper presented a control scheme for parallel drive system of double Switched Reluctance motors. The sliding mode control algorithm is adopted in the main controller for closed-loop rotor speed control of main motor. The fuzzy control algorithm is adopted in the subordinate controller for synchronized rotor speed and loads equilibrium distribution between main motor and subordinate motor. The given rotor speed and the actual rotor speed of the main motor are the input parameters of the main VSS controller. The duty ratio of pulse width modulation signal of the main VSS controller can be gained by the sliding mode control algorithm. The actual rotor speed of the main motor, the actual rotor speed of the subordinate motor, the average values of DC bus supply current for main power converter, and the average values of DC bus supply current for subordinate power converter are the input parameters of the subordinate Fuzzy controller. The increment of the duty ratio of pulse width modulation signal of the subordinate VSS controller can be gained by the fuzzy control algorithm. The nonlinear simulation results of the system based on MATLAB-Simulink show that the advanced scheme is satisfied with the requirement for towing storage battery electric locomotives by the parallel drive system of double Switched Reluctance motors.
基于滑模和模糊控制器的双开关磁阻电机并联驱动系统仿真
提出了一种双开关磁阻电动机并联驱动系统的控制方案。主控制器采用滑模控制算法对主电机转子转速进行闭环控制。从属控制器采用模糊控制算法,实现主、从属电机同步转子转速和负载均衡分配。给定的转子转速和主电机的实际转子转速是主VSS控制器的输入参数。通过滑模控制算法可以获得VSS主控制器脉宽调制信号的占空比。主电机实际转子转速、从属电机实际转子转速、主电源变换器直流母线供电电流平均值、从属电源变换器直流母线供电电流平均值作为从属模糊控制器的输入参数。通过模糊控制算法,可以获得下级VSS控制器脉宽调制信号占空比的增量。基于MATLAB-Simulink的非线性仿真结果表明,该方案能够满足双开关磁阻电机并联驱动系统牵引蓄电池电力机车的要求。
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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