电动汽车推进用开关磁阻电机不同转矩分担函数的比较研究

A. Pop, V. Petrus, C. Martis, V. Iancu, J. Gyselinck
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引用次数: 33

摘要

在本文中,作者比较了三种不同自由度的转矩共享函数的优化版本,用于提高开关磁阻电机的效率。从基本的矩形变化开始,函数的上升和下降侧面使用余弦,指数和更一般的方法(进一步称为分段三次共享函数)建模。确定在2和任意数(对于一般方法)之间变化的自由度,以便在平滑扭矩条件下运行时将损失最小化。基于线性和非线性约束的优化过程,考虑到有限的可用直流母线电压,总(铜和铁)损耗最小。在此基础上,建立了光滑模型,分离了引起转矩脉动的两个主要原因,并证明在忽略斩波脉动的情况下,可以得到无脉动的转矩。为确定分段三次函数的最优自由度(DoFs)数,已经进行了广泛的研究。所提出的方法在8/ 6,30 kw峰值功率的SRM上成功地实现了数值和实验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative study of different torque sharing functions for losses minimization in Switched Reluctance Motors used in electric vehicles propulsion
In this paper the authors present a comparison between optimised versions of three torque sharing functions, with different number of degrees of freedom, used for improving the efficiency in Switched Reluctance Motors. Starting from the basic rectangular variation, the ascending and descending flanks of the function are modeled using a cosine, exponential and a more general approach (further referred to as piecewise cubic sharing function). The degrees of freedom varying between two and an arbitrary number (for the general approach) are determined so as to minimize losses, when operating in smooth torque conditions. Based upon an optimisation procedure with both linear and nonlinear constraints, the total (copper and iron) losses are minimized considering a limited available DC bus voltage. Moreover, a smooth model is presented so as to be able to separate the two main causes for the torque ripple and it is shown that, neglecting the chopping ripple, a ripple-free torque can be obtained. Extensive studies have been conducted for determining the optimal number of degrees of freedom (DoFs) for the piecewise cubic function. The proposed methods were successfully implemented on a 8/6, 30kW peak power, SRM both numerically and experimentally-wise.
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