基于转矩平滑策略的电动汽车开关磁阻电机分析

M. Ruba, C. Martis, L. Szabó, F. Jurca
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引用次数: 0

摘要

本文主要对30kW开关磁阻电机的电动汽车推进系统进行了分析。本文详细介绍了开发这种电机的基本步骤,并使用联合仿真程序验证了结构,将有限元分析软件(Cedrat Flux2D)与用于实现控制器的软件(Matlab/Simulink)耦合在一起。由于SRM的优点已经众所周知,转矩波动是其主要缺点。使用专用的控制策略,即扭矩共享函数(TSF),可以尽可能地减少这些。该论文提供的解决方案强调了使用廉价、可靠和强大的电机作为推进装置的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of a switched reluctance machine for EV application with torque smoothening strategy
The subject of the paper is focused on the analysis of a 30kW switched reluctance machine for propulsion of electrical vehicle propulsion (EV). The paper details the fundamental steps when developing such an electrical machine, and validates the structure using co-simulation procedures, coupling finite element analysis software (Cedrat Flux2D) with software used to implement the controller (Matlab/Simulink). As the advantages of the SRM are already known, the torque ripples are its main disadvantages. These are reduced as much as possible using a dedicated control strategy, the torque sharing functions (TSF). The solution offered by the paper highlights the possibility of using a cheap, reliable and robust electrical machine for propulsion unit.
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