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Variable-Reluctance Resolver Rotor Design Based on FEA and Matlab Co-Simulation

机译:基于FEA和MATLAB共模的可变磁阻旋转转子设计

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Variable-Reluctance (VR) resolver has been wildly use in harsh environments as a shaft position detection unit with its high reliability and robustness. This paper presents a Variable-reluctance Resolver for electric vehicle applications and a method to design the resolver's salient-pole rotor is mentioned. In this method Finite Element Analysis (FEA) used to analysis a convex shape changes in the rotor magnetic field distribution. Comparing the FEA air-gap harmonics distribution and Resolver to Digital converter (RDC) position error distribution, Position error trends is same as the odd harmonics distribution. Based on the results, a variable reluctance resolver designed for the hybrid vehicle motor absolute position detection, Prototype tests verified the effectiveness of the design method and meet the requirements of the application.
机译:可变磁阻(VR)旋转变压器在恶劣环境中被广泛地使用,作为轴位置检测单元,具有高可靠性和鲁棒性。本文提出了一种可变凹陷的电动车应用旋转变压器,并提到了设计旋转变压器的突出极转子的方法。在该方法中,有限元分析(FEA)用于分析转子磁场分布中的凸形变化。将FEA气隙谐波分配和解析器与数字转换器(RDC)位置误差分布进行比较,位置错误趋势与奇谐波分布相同。基于结果,设计用于混合动力车电机绝对位置检测的可变磁阻旋转变压器,原型测试验证了设计方法的有效性,满足了应用的要求。

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