首页> 外文会议>International Conference on Mechanical Engineering, Industrial Materials and Industrial Electronics >Reduction of Cogging Torque and Torque Ripple in Exterior Rotor Type BLDC Motor for EV/HEV Battery Cooling System
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Reduction of Cogging Torque and Torque Ripple in Exterior Rotor Type BLDC Motor for EV/HEV Battery Cooling System

机译:EV / HEV电池冷却系统外部转子型BLDC电动机中齿轮扭矩和扭矩波动的减小

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In this study, reduction of cogging torque and torque ripple for an exterior rotor type brushless dc (BLDC) motor for an automotive cooling device were proposed and a design concept for a fan motor for use in a battery pack mounted in an electric vehicle/hybrid electric vehicle (EV/HEV) was presented. Various pole/slot combinations and permanent magnet (PM) pole arc ratios were compared using finite element analysis (FEA), and the PM overhang ratio necessary to sufficiently increase the magnetic flux that enabled coil linkage was determined through 3D FEA. Based on the analysis results, an actual model was produced, experimentally verified, and used to validate the proposed design model.
机译:在该研究中,提出了用于汽车冷却装置的外部转子型无刷DC(BLDC)电动机的齿槽扭矩和扭矩脉动的减小,并且用于安装在电动车辆/混合动力器的电池组中的风扇电动机的设计概念 提出了电动车(EV / HEV)。 使用有限元分析(FEA)比较各种杆/槽组合和永磁体(PM)极电弧比,并且通过3D FEA测定充分增加使能线圈连杆的磁通量所需的PM悬垂比。 基于分析结果,生产实际模型,实验验证,用来验证所提出的设计模型。

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