A Novel Energy Flow Analysis and its Connection with Modal Analysis for Investigating Electromechanical Oscillations in Multi-Machine Power Systems

Yong Hu, S. Bu
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Abstract

In this paper, a novel energy flow analysis (EFA) is proposed based on the signal reconstruction and decomposition to investigate the electromechanical oscillations. In contrast to the conventional EFA, the connection between the proposed EFA and modal analysis (MA) can be quantitatively revealed for arbitrary models of synchronous generators in multi-machine power systems. Firstly, the time-domain implementation (TDI) of the proposed EFA is designed. Specifically, the measurements at the terminal of a local generator are reconstructed through an exponential operator and then decomposed with respect to an angular frequency. Then, the mode-screened damping torque coefficient is defined to extract the damping feature with respect to an electromechanical oscillation mode. After that, the frequencydomain implementation (FDI) is derived. Specifically, the Parsevals Theorem is applied to transform the proposed EFA from the time domain to frequency domain. On this basis, the consistency between the proposed EFA and MA is strictly proved, which is applicable for arbitrary models of synchronous generators in multi-machine power systems. Additionally, the application procedure of the proposed EFA in investigating electromechanical oscillations is given. Finally, the proposed EFA is substantially demonstrated in multiple case studies.
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研究多机电力系统机电振荡的一种新的能量流分析及其与模态分析的联系
本文提出了一种基于信号重构和分解的能量流分析方法来研究机电振荡。与传统的EFA相比,本文提出的EFA与模态分析(MA)之间的联系可以定量地揭示在多机电力系统中任意模型的同步发电机。首先,设计了EFA的时域实现。具体来说,通过指数算子重构局部发生器终端的测量值,然后对其进行角频率分解。然后,定义模式屏蔽阻尼力矩系数,提取机电振荡模态的阻尼特征;然后,推导了频域实现(FDI)。具体来说,利用Parsevals定理将所提出的EFA从时域变换到频域。在此基础上,严格证明了所提出的EFA与MA之间的一致性,适用于多机电力系统中同步发电机的任意模型。此外,给出了该方法在机电振荡研究中的应用步骤。最后,提议的全民教育在多个案例研究中得到了充分证明。
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