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Investigation of electromagnetic torque production in induction motor during charging operation

机译:充电操作期间感应电动机电磁扭矩产生的研究

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Integrated battery chargers (IBCs) provide the flexibility of reusing the electric drive-train components of the electric vehicle (EV) for the charging operation. The purpose of the paper is to reuse its traction inverter and motor windings as rectifier and grid interfacing filter, respectively for charging and keeping rotor standstill without using any external brake. Various winding configurations are developed by splitting the three-phase induction motor (IM) winding into two parts at zero electrical degree to keep the rotor standstill. The different stator winding connections are proposed for IM which restricts the formation of rotating magnetic field (RMF). Cases are categorized into two parts, in the first part, RMF is cancelled to zero and in the other part, RMF is converted into pulsating magnetic field (PMF). Mathematical investigation for torque production in both cases is provided to prove that the proposed winding connections are incapable of developing electromagnetic torque in machine. Mathematical findings are validated by experimentation on split three-phase IM (STP-IM). This analysis is useful in identifying the nature of torque developed in motor during charging operation of EV.
机译:集成电池充电器(IBC)提供重用电动车辆(EV)的电动驱动器组件的灵活性,以进行充电操作。本文的目的是分别将其牵引逆变器和电机绕组重用为整流器和栅格接口过滤器,用于在不使用任何外部制动器的情况下充电和保持转子静止。通过将三相感应电动机(IM)缠绕成两个部分以零电气度分成两部分以保持转子静止的各种绕组配置。提出了用于IM的不同定子绕组连接,其限制旋转磁场(RMF)的形成。病例被分为两部分,在第一部分中,RMF被取消到零,另一部分,RMF转换成脉动磁场(PMF)。提供两种情况下对扭矩产生的数学调查,以证明所提出的绕组连接不能在机器中开发电磁扭矩。通过分裂三相IM(STP-IM)的实验验证数学发现。该分析对于识别电动机在EV的充电操作期间在电机中产生的扭矩性质是有用的。

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