Analysis of low harmonics and high efficient BLDC motor drive system for automotive application

M. Maharajan, P. Muthu, M. Palpandian, S. Kannadasan
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引用次数: 3

Abstract

This project presents a comparative study of VSI, CSI and Buck Converter based CSI fed BLDC Motor for automotive applications. The aim of the work is to reduce the cost and size of a brushless dc motor (BLDC) drive as well as increase the reliability and ruggedness of the drive. Traditional BLDC drives use Voltage Source Inverter (VSI) that utilize hard switching, thereby generating switching losses and entail the use of large heat sinks. VSI needs a huge dc link capacitor that is inherently unreliable and is one of the most expensive components of the drive. Hence, a Current Source Inverter (CSI) is used to replace the hard switching by soft switching, thereby eliminating the heat sinks as well as the large dc link capacitor. A controlled rectifier together with a large inductor acts as a current source, the only disadvantage is the large value of the dc link inductor and the huge number of turns needed to achieve these values of the inductances lead to huge resistive losses. Therefore, it is shown that it is possible to replace the controller rectifier and the large inductor with a suitable Buck converter based current source inverter can be switched at high frequencies with much smaller value of the dc link inductor without increasing the current ripples. Hence, it is possible to have the advantage of using a CSI as well as reduce the value of the dc link inductor without a corresponding increase in the heat sink. The effectiveness of the VSI and CSI fed BLDC motor schemes are verified through the simulation results.
低谐波高效无刷直流电机驱动系统在汽车中的应用分析
本项目介绍了汽车用VSI、CSI和基于Buck变换器的CSI馈入无刷直流电机的比较研究。这项工作的目的是减少无刷直流电动机(BLDC)驱动器的成本和尺寸,以及增加驱动器的可靠性和坚固性。传统的无刷直流驱动器使用使用硬开关的电压源逆变器(VSI),从而产生开关损耗并需要使用大型散热器。VSI需要一个巨大的直流链路电容器,它本身就不可靠,是驱动器中最昂贵的组件之一。因此,采用电流源逆变器(CSI)以软开关代替硬开关,从而消除了散热器和大型直流链路电容。可控整流器与大型电感一起作为电流源,唯一的缺点是直流链路电感的大值和实现这些电感值所需的大量匝数导致巨大的电阻损耗。因此,用合适的降压变换器取代控制器整流器和大型电感器是可能的,可以用更小的直流链路电感器值在高频率下切换电流源逆变器,而不会增加电流纹波。因此,有可能具有使用CSI以及降低直流链路电感值的优点,而不会相应增加散热器。仿真结果验证了VSI和CSI两种无刷直流电机方案的有效性。
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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