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Identification of interharmonics using disperse energy distribution algorithm for flicker troubleshooting

机译:使用分散能量分布算法识别间谐波,进行闪烁故障排除

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摘要

It is well known that interharmonics close to the fundamental or harmonics may cause significant flicker. Although International Electrotechnical Commission (IEC) standard is adopted for interharmonic measurement, the interharmonic frequencies may not be obtained accurately under this framework. Based on the frequency resolution at 5 Hz recommended by IEC, this study develops a dispersed energy distribution (DED) algorithm to measure those interharmonics that may cause flicker due to a low frequency fluctuation phenomenon. The relation between the frequency and dispersed leakage from discrete Fourier transform is induced, and the mathematical model is thus established to find the interharmonic frequency. However, the dispersed energy can be collected to retrieve its original amplitude. The performance results based on the periodically varying load verify that the proposed scheme can achieve reliable, rapid and accurate outcome.
机译:众所周知,接近基波或谐波的间谐波可能会引起明显的闪烁。尽管采用国际电工委员会(IEC)标准进行间谐波测量,但在此框架下可能无法准确获得间谐波频率。根据IEC推荐的5 Hz频率分辨率,本研究开发了一种分散能量分布(DED)算法来测量那些可能由于低频波动现象而引起闪烁的间谐波。推导了频率与离散傅里叶变换的离散泄漏之间的关系,从而建立了数学模型来查找间谐波频率。但是,可以收集分散的能量以恢复其原始振幅。基于周期性变化负载的性能结果验证了所提出的方案可以实现可靠,快速和准确的结果。

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