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Performance analysis of the 2DoF direct drive induction motor applying composite multilayer method

机译:复合多层法的2DoF直驱感应电动机性能分析

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摘要

This study presents a composite multilayer method (CMM) to evaluate the performance of a two-degree-offreedom (2DoF) direct drive induction motor (2DoFDDIM) whose solid rotor is coated with a copper layer. It includes a rotary part and a linear part. Based on the traditional multilayer theory, a complete 2DoFDDIM CMM computer program importing propagation constants is built. Due to the complex magnetic field in a 2DoFDDIM, this study mainly analyses it from the perspective of a single DOF motor. An equivalent circuit for the rotary part of the 2DoFDDIM is then derived applying CMM and the 2D magnetic field distribution is obtained by solving Maxwell's equations in motor layers. The developed torques, power factors and stator currents of the rotary part with different slips and the latter two of the linear part at zero speed are calculated by CMM, which are then compared with results from the finite element method (FEM) and experimental results. The computation time of the CMM is far less than that of the FEM. The acceptable accuracy confirms the effectiveness of the CMM for analysis and performance calculations of the 2DoFDDIM.
机译:这项研究提出了一种复合多层方法(CMM),用于评估固态转子涂有铜层的两自由度(2DoF)直接驱动感应电动机(2DoFDDIM)的性能。它包括旋转部分和线性部分。基于传统的多层理论,构建了一个完整的2DoFDDIM CMM计算机程序,用于导入传播常数。由于2DoFDDIM中存在复杂的磁场,因此本研究主要从单自由度电机的角度对其进行分析。然后,使用CMM得出2DoFDDIM旋转部分的等效电路,并通过求解电动机层中的麦克斯韦方程来获得2D磁场分布。通过CMM计算出具有不同转差率的旋转零件以及线性零件在零速时的后两个部分的发展转矩,功率因数和定子电流,然后将它们与有限元方法(FEM)的结果和实验结果进行比较。 CMM的计算时间远远少于FEM。可接受的精度确认了CMM在2DoFDDIM的分析和性能计算中的有效性。

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