Modal identification of power system oscillation using parametric DFT technique

Sakthivel Rajmurugan, B. Jeyasurya
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Abstract

Fourier based technique of system identification by mode decomposition has always been non-parametric which might not be accurate for power system applications. In this paper, a parametric Discrete Fourier transform (DFT) technique is used to identify both inter-area modes and local area modes of a power system oscillation. The natural frequency and damping ratio (the poles) are obtained from fitting a curve around the dominant peaks in the DFT of the measured signal. Using the estimated poles, the amplitude and phase are obtained by fitting with the measured signal like any other parametric method. In this paper, the parametric DFT is applied for a synthetic signal with closely spaced inter-area modes with poor-damping which is validated in the presence of two levels of white Gaussian noise. The WECC 9 bus system is considered as a case study and the parametric DFT technique is compared and contrasted with the traditional Prony analysis technique.
基于参数DFT技术的电力系统振动模态辨识
基于傅里叶的模态分解系统辨识技术一直是非参数化的,在电力系统应用中可能不准确。本文采用参数离散傅立叶变换(DFT)技术来识别电力系统振荡的区域间模态和局部模态。固有频率和阻尼比(极点)是通过在被测信号的DFT中围绕主导峰拟合曲线得到的。利用估计的极点,像任何其他参数方法一样,与测量信号拟合得到振幅和相位。本文将参数离散傅立叶变换应用于具有紧密间隔的低阻尼区间模态的合成信号,并在存在两级高斯白噪声的情况下进行了验证。以wecc9总线系统为例,对参数DFT技术与传统的proony分析技术进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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