Maximum Torque per Ampere Control of Permanent Magnet Assisted Synchronous Reluctance Motor: An Experimental Study

Yasmine Ihcene Nadjai, H. Ahmed, N. Takorabet, Peyman Haghgooei
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引用次数: 3

Abstract

In recent times, permanent magnet assisted synchronous reluctance motors (PMaSRM) have been considered as suitable traction motors for electric vehicle applications. In this type of machine, where the share of reluctance torque is more significant than the excitation torque, it is more appropriate to use a control strategy that can fully utilize the reluctance torque. This paper deals with a new structure of permanent magnet-assisted synchronous reluctance motors that was designed and manufactured in a previous study. This paper suggests applying, in a first study, a constant parameter maximum torque per ampere (MTPA) strategy to make a contribution towards the control of such structure that is becoming increasingly attractive in the field of electric transportation. This method is usually used to control interior permanent magnet synchronous motors to minimize the copper losses of the system. Before implementing and simulating this method, the mathematical models of the suggested motor and the inverter are given. An experimental study is conducted on a small-scale 1 kW prototype PMaSRM using a MicrolabBox Dspace to test and examine the proposed control. Simulation and experimental results are presented in this article in order to verify the validity of the developed control strategy.
永磁辅助同步磁阻电机每安培最大转矩控制的实验研究
近年来,永磁辅助同步磁阻电机(PMaSRM)已被认为是适合电动汽车应用的牵引电机。在这种类型的电机中,当磁阻转矩所占的份额大于励磁转矩时,采用能够充分利用磁阻转矩的控制策略更为合适。本文介绍了前人设计制造的永磁辅助同步磁阻电动机的一种新结构。本文建议,在第一项研究中,应用恒参数最大转矩每安培(MTPA)策略,对这种在电动交通领域越来越有吸引力的结构的控制做出贡献。这种方法通常用于控制内部永磁同步电动机,以尽量减少系统的铜损耗。在实现和仿真该方法之前,给出了所建议的电机和逆变器的数学模型。利用MicrolabBox Dspace在小型1kw原型PMaSRM上进行了实验研究,以测试和检查所提出的控制。为了验证所提出的控制策略的有效性,文中给出了仿真和实验结果。
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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