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首页> 外文期刊>Journal of marine science and technology >ANALYSIS OF POWER SYSTEM LOW FREQUENCY OSCILLATION WITH EMPIRICAL MODE DECOMPOSITION
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ANALYSIS OF POWER SYSTEM LOW FREQUENCY OSCILLATION WITH EMPIRICAL MODE DECOMPOSITION

机译:经验模态分解的电力系统低频振荡分析

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The low frequency oscillation (LFO) in power systems often consists of composite responses of various oscillation modes. Thus a direct analysis of LFO for revealing system dynamic characteristics is not straightforward. The primary objective of this study is to utilize the method of empirical mode decomposition (EMD) to expand the LFO response under study into multiple intrinsic mode functions (IMFs) for detailed investigation of power system dynamics. Then time-frequency power information is explored using wavelet transform to obtain time-frequency power graph which is further resolved into a time-frequency-power diagram. Finally, information from the time-frequency-power diagram is further examined to determine those generators that demonstrate higher degree of participation in the LFO of power system. The comparative analysis in frequency domain shows that, at specific frequencies in LFO modes, higher oscillation participation power also shows a larger participation factor in its frequency domain analysis.
机译:电力系统中的低频振荡(LFO)通常由各种振荡模式的复合响应组成。因此,对LFO进行直接分析以揭示系统动态特性并不容易。这项研究的主要目的是利用经验模式分解(EMD)方法将正在研究的LFO响应扩展为多个固有模式函数(IMF),以详细研究电力系统动力学。然后利用小波变换探索时频功率信息,得到时频功率图,进一步将其分解为时频功率图。最后,进一步检查时频-功率图中的信息,以确定那些表现出更高程度参与电力系统LFO的发电机。频域的比较分析表明,在LFO模式下的特定频率下,较高的振动参与功率在其频域分析中也显示出较大的参与因子。

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