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Selection of Excitation Signal Waveform for Improved Performance of Wound-Rotor Resolver

机译:选择励磁信号波形以改善绕线旋转变压器的性能

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Wound-Rotor (WR) resolvers are similar to two-phase synchronous generators. Their difference is related to the excitation signal. While DC voltage is used for exciting synchronous generator, high frequency AC voltage is employed for that of resolver. The common waveform for excitation signal of resolver is sinusoidal voltage. However, preparing the high frequency sinusoidal voltage in the resolver to digital converter (RDC) is always a challenge. Therefore, in this paper different high frequency AC waveforms are applied as the excitation signal of the resolver and the estimated position, resulted from RDC, is discussed. The aim of this work is to find an appropriate excitation waveform that ensures the high accuracy operation of resolver beside the simple implementation possibility for RDC. Output analogue voltages are obtained using time stepping finite element analysis. Then, the amplitude modulated (AM) signals are imported to the MATLAB where two demodulation techniques are compared for calculating the voltages' envelope and the position error. Finally, experimental measurements validate the simulation results.
机译:绕线(WR)旋转变压器类似于两相同步发电机。它们的差异与激励信号有关。直流电压用于激励同步发电机,而高频交流电压用于旋转变压器。旋转变压器激励信号的常见波形是正弦电压。但是,在旋变数字转换器(RDC)中准备高频正弦电压始终是一项挑战。因此,本文采用不同的高频交流波形作为旋转变压器的激励信号,并讨论了由RDC产生的估计位置。这项工作的目的是找到一种合适的激励波形,该波形除了可以简化RDC的实现方式之外,还可以确保旋转变压器的高精度运行。使用时间步进有限元分析获得输出模拟电压。然后,将调幅(AM)信号导入到MATLAB中,在MATLAB中比较两种解调技术以计算电压的包络线和位置误差。最后,实验测量结果验证了仿真结果。

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