线性地铁直线感应电机驱动的最优效率控制

Jianqiang Liu, F. Lin, Zhongping Yang, T. Zheng
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引用次数: 15

摘要

本文提出了一种新的方法,以最大限度地减少变速和/或推力线性感应电动机(LIM)驱动中的铜和铁的总损耗。该方法建立在考虑了端点效应和引力的线性模型的基础上。对于给定的转速和负载,该模型可以建立量化铜和铁损耗的方程,并可以推导出最小总损耗的定子磁场与转矩电流之间的关系。在此基础上,提出了一种损耗最小化控制算法,并结合矢量控制方式驱动LIM。该算法可以在保持良好动态响应的同时,降低变速推力LIM驱动的电磁损耗。仿真结果表明,在保持良好动态响应的情况下,可以提高LIM驱动器的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal Efficiency Control of Linear Induction Motor Drive for Linear Metro
In this paper, a new approach is proposed that minimizes the total copper and iron losses in variable speed and/or thrust force linear induction motor (LIM) drive. This method is based on a LIM model that considering the end effect and attraction force. For a given speed and load this model allows the establishment of equations to quantify copper and iron losses, and the relationship between stator field and torque currents for minimum total loss can be deduced. Based on these equations, a loss minimization control algorithm, combined with vector control mode to drive the LIM, is proposed. This algorithm allows the electromagnetic losses in a variable speed and thrust force LIM drive to be decreased while keeping a good dynamic response. The simulated results presented show that it is possible to improve the efficiency of LIM drive keeping a good dynamic response.
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