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HHT based on the LS-SVM and its application in the voltage flicker and harmonic detection of microgrid

机译:基于LS-SVM的HHT及其在微电网电压闪变和谐波检测中的应用

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Microgrid contains many distributed resources (DR), such as photovoltaic, wind power, and these DR which have the characteristics of random, volatility and intermittent, will cause voltage fluctuation and flicker, therefore, harmonic pollution will be produced from power electronic devices in DR. Hilbert-Huang Transform (HHT) can distill these disturbing signals automatically and time-frequency spectrum can be obtained. However, in the application of this method there are serious end effects that mixed mode phenomenon will appear, affecting the detecting results. In order to suppress the end effects, a novel HHT based on Least Squares Support Vector Machine (LS-SVM) is applied to analyze voltage flicker and harmonic in microgrid. The results show that the improved HHT method is effective to control the end effects and the time, frequency and amplitude of disturbing signal will be detected quickly and effectively.
机译:微电网包含光伏,风能等许多分布式资源(DR),这些分布式资源具有随机性,波动性和间歇性的特征,会引起电压波动和闪烁,因此,DR中的电力电子设备会产生谐波污染。 。 Hilbert-Huang变换(HHT)可以自动提取这些干扰信号,并获得时间频谱。但是,在该方法的应用中,会出现严重的最终结果,即会出现混合模式现象,从而影响检测结果。为了抑制最终影响,基于最小二乘支持向量机(LS-SVM)的新型HHT被应用于分析微电网中的电压闪变和谐波。结果表明,改进的HHT方法可以有效地控制端效应,可以快速,有效地检测出干扰信号的时间,频率和幅度。

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