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Sizing and Performance Analysis of an Electric Motor in an E-rickshaw

机译:人力车中电动机的尺寸和性能分析

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In the current world of modernisation, the quantity of fossil fuels and petroleum products are tremendously decreasing. Here comes the relevance of Electric Vehicle (EV) due to the available renewable electrical energy sources, effective regenerative braking, improved road handling, and torque top-up capability. Nowadays BLDC motor is commonly used in EV, but due to its vibrations, noise, and high torque ripples PMSM is a better replacement for BLDC in EV applications. Among the EVs, auto-rickshaws and E-rickshaws are the normal vehicles for common people. For E-rickshaws, PMSM can be selected since it exhibits high efficiency, high output torque, and small in size due to its high power density. The construction of PMSM for an E-rickshaw involves a lot of design specifications and calculations. Before the physical construction of PMSM, it is necessary to realize that the designed machine exhibit better performance for EV application. In order to verify these, a virtual development and performance analysis of PMSM is necessary. This paper proposes sizing with vehicle dynamics, analytical design, virtual development, and performance analysis of a three-phase PMSM using Finite Element Analysis (FEA) in Ansys Maxwell platform. The electrical and magneto-static analysis are also included in this paper.
机译:在当前的现代化世界中,化石燃料和石油产品的数量正在大大减少。电动汽车(EV)的重要性在于可利用的可再生电能资源,有效的再生制动,改进的道路处理能力以及扭矩补充能力。如今,BLDC电动机通常用于电动汽车,但由于其振动,噪声和高转矩脉动,PMSM可以更好地替代EV应用中的BLDC。在电动汽车中,自动人力车和电动人力车是普通百姓的普通车辆。对于电动人力车,可以选择PMSM,因为它具有高效率,高输出转矩以及由于其高功率密度而体积小。电动人力车的PMSM的施工涉及许多设计规范和计算。在PMSM的物理构造之前,有必要意识到设计的机器对于EV应用具有更好的性能。为了验证这些,必须对PMSM进行虚拟开发和性能分析。本文提出了在Ansys Maxwell平台中使用有限元分析(FEA)对三相PMSM进行车辆动力学,分析设计,虚拟开发和性能分析的方法。电气和静磁分析也包括在本文中。

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