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Analytical Calculation of No-Load Voltage Waveforms in Machines Based on Permanent-Magnet Volume Integration

机译:基于永磁体体积积分的电机空载电压波形的解析计算

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We develop an analytical expression for predicting electromotive force (EMF) waveforms resulting from permanent magnets (PMs) in electrical machines. The expressions for the flux linkage are based on a volume integral over the magnet volume, rather than the usual surface integral over the coil. The proposed method consists of applying a virtual current in the coil of the machine and calculating the magnetic field generated inside the PM volume. The EMF waveform is obtained by taking the derivative of the flux linkage with respect to time. We present analytical expressions of the EMF for various PM shapes and Halbach magnetization patterns. We tested a total of four configurations of PMs, and the experimental waveforms confirmed the validity of the expressions obtained theoretically.
机译:我们开发了一种解析表达式,用于预测电机中的永磁体(PM)产生的电动势(EMF)波形。磁链的表达式基于磁体体积上的体积积分,而不是线圈上通常的表面积分。所提出的方法包括在电机的线圈中施加虚拟电流,并计算在PM体积内部产生的磁场。 EMF波形是通过将磁链的导数相对于时间获得的。我们介绍了各种PM形状和Halbach磁化模式的EMF的解析表达式。我们总共测试了四种PMs配置,并且实验波形证实了理论上获得的表达式的有效性。

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