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Analytical determination of the turn-to-turn capacitances for the prediction of voltage peaks in a PWM-fed motor winding

机译:PWM馈电电动机绕组中电压峰预测转弯电容的分析测定

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The number of inverter-fed motors is increasing due to the good controllability of the motor and the meanwhile low acquisition costs. The steep voltage slopes of the converters lead to an uneven voltage distribution along the winding and thus to voltage peaks between the conductors, which stresses the insulation. The voltage distribution can be predicted by means of equivalent circuit diagrams, which take into account the capacitive coupling between the conductors. This paper presents a novel approach for an analytical determination of the turn-to-turn capacitances, which, in addition to the geometry and the placement of the conductors, considers the influence of materials with different permittivities. The conductors are simulated by means of line charges discretely placed inside the electrodes and receptor points attached to the conductor surfaces. The capacitances are determined by means of the Maxwell capacitance matrix. The method is validated by means of FEM simulations for different geometries and materials.
机译:由于电动机的良好可控性和与此同时的低采集成本,逆变器馈电电动机的数量正在增加。转换器的陡峭电压斜面导致沿绕组的不均匀电压分布,从而对导体之间的电压峰值,这应力地应力。可以通过等效电路图预测电压分布,其考虑导体之间的电容耦合。本文提出了一种新的方法,用于对转弯电容的分析测定的方法,除了几何形状和导体的放置之外,还考虑材料具有不同兴高率的影响。通过离散地放置在连接到导体表面的电极和受体点的线路电荷来模拟导体。通过麦克斯韦电容矩阵确定电容。该方法通过针对不同几何和材料的有限元模拟验证。

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