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Prediction and Analysis of EMI Spectrum Based on the Operating Principle of EMC Spectrum Analyzers

机译:基于EMC谱分析仪操作原理的EMI光谱预测与分析

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摘要

EMC spectrum analyzers are popularly used for electromagnetic interference (EMI) measurement in power electronics systems. Depending on the specifications of EMI standards, the EMI measurement could be very time consuming. Conventionally, the fast Fourier transform is used to derive the EMI spectrum from themeasured time-domain waveforms. However, these resultsmay not agree with the measurement results from spectrum analyzers, and sometimes the difference could be significant. In this paper, a technique to quickly and accurately predict and analyze the EMI spectrum from time-domain waveforms is proposed. The technique is developed based on the spectrum analyzer's operating principle and the requirements of EMI standards. The EMI spectra of three modulation schemes are also analyzed. Theoretical analysis, simulations, and experiments were all conducted. The predicted peak, quasi-peak, and average EMI matches the measured EMI in whole conductive frequency range. The developed technique can accurately predict EMI using much shorter time than conventional EMC spectrum analyzers and it saves cost of expensive spectrum analyzers.
机译:EMC谱分析仪普遍用于电力电子系统中的电磁干扰(EMI)测量。根据EMI标准的规格,EMI测量可能非常耗时。传统上,快速傅里叶变换用于从基于针对性的时域波形导出EMI光谱。然而,这些结果不同意频谱分析仪的测量结果,有时差异可能是显着的。在本文中,提出了一种快速准确地预测和分析来自时域波形的EMI光谱的技术。该技术是基于Spectrum Analyzer的运行原理和EMI标准的要求开发的。还分析了三种调制方案的EMI光谱。理论分析,模拟和实验都进行了。预测的峰值,准峰和平均EMI与整个导电频率范围内的测量的EMI匹配。开发技术可以使用比传统的EMC频谱分析仪更短的时间准确地预测EMI,并且节省了昂贵的频谱分析仪的成本。

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