Performance Analysis of Brushless DC Motor

Hardik A Prajapati, Grupesh Tapiawala
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引用次数: 1

Abstract

An increasing inclination towards electric vehicle (EV) can reduce greenhouse gas emission and carbon footprint. The motor in an electrical vehicle is a crucial component which can affect the efficiency, power and performance of the EV. Brushless DC Motor is widely used in electric vehicles because of higher efficiency and higher speed. Rotor winding can be replaced by PM to eliminate the copper losses, which increases the efficiency of motor. Whereas the adverse effect of PM i.e. cogging torque and PM demagnetization, can be analyzed and optimized. Hence, performance analysis is important at design phase to meet the required application criteria. This paper deals with Various techniques to reduce the cogging torque, an effect of demagnetization on motor performance, noise and vibration forecast due to electromagnetic forces. To get more insight, dominant mode shapes and operational deflection shapes are analyzed by modal and Harmonic response analysis.
无刷直流电机的性能分析
越来越多的人倾向于使用电动汽车可以减少温室气体排放和碳足迹。电动汽车中的电机是影响电动汽车效率、功率和性能的关键部件。无刷直流电动机因其效率高、速度快而被广泛应用于电动汽车中。转子绕组可以用永磁代替,消除了铜的损耗,提高了电机的效率。而永磁涡流的不利影响,即齿槽转矩和永磁涡流的退磁,可以进行分析和优化。因此,为了满足所需的应用程序标准,性能分析在设计阶段非常重要。本文讨论了减小齿槽转矩的各种技术,消磁对电机性能的影响,电磁力引起的噪声和振动预测。为了获得更多的信息,通过模态和谐波响应分析分析了主振型和工作挠度振型。
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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