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Normalization-Based Approach to Electric Motor BVR Related Capacitances Computation

机译:基于归一化的电动机BVR相关电容计算方法

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摘要

Electrical discharge machining bearing currents that may occur within electric machines of variable-speed-drive motor systems have been recognized for a long time. One key influential factor, the machine's capacitive voltage divider "bearing-voltage-ratio" (BVR) strongly depends on the rotor-to-frame and the stator winding-to-rotor capacitances; these are, in turn, affected by the design of the machine's stator slot. This paper presents an approach to improve the accuracy with which these capacitances can be estimated. It is based on the well-known plate capacitance equation which is then corrected by normalization functions. The functions are defined by extensive parameter studies using electrostatic finite element method (FEM) simulations. The final expressions not only allow for the prediction of the stator-winding-to-rotor and rotor-to-frame capacitances, they are also readily applicable. Thereby, they facilitate, for example, the clear-cut study of the sensitivity of the BVR towards changes in the different stator slot parameters.
机译:长期以来,人们已经认识到在变速驱动电机系统的电机内部可能发生的放电加工轴承电流。一个重要的影响因素是电机的电容性分压器“轴承电压比”(BVR)很大程度上取决于转子到机架和定子绕组到转子的电容;这些又会受到电机定子槽设计的影响。本文提出了一种提高这些电容估计精度的方法。它基于众所周知的极板电容方程,然后通过归一化函数进行校正。通过使用静电有限元方法(FEM)模拟进行广泛的参数研究来定义功能。最终表达式不仅允许预测定子绕组到转子的电容和转子到框架的电容,而且它们很容易应用。因此,它们有助于例如对BVR对不同定子槽参数的变化的敏感性进行清晰的研究。

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