Network-Based Spectral Analysis of Power Systems with Renewable Energy Penetration

W. Hao, Qian Zhang, Xueyi Wang, D. Gan
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Abstract

This paper studies spectral properties of power systems with renewable energy penetration from a network-based perspective. First, power network equations with renewable energy penetration and the Kron-reduced matrix are introduced. Then, the monotonicity between the number of renewable energy nodes and the eigenvalues of the Kron-reduced matrix is proved. We study the relationship between the smallest eigenvalue of the Kron-reduced matrix and voltage stability. We also report two applications of algebraic connectivity in power systems with renewable energy penetration: synchronous stability and graph partitioning. Finally, the introduced spectral properties are applied to a simple two-area system and a regional power grid in Tibet, China.
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基于网络的可再生能源渗透电力系统频谱分析
本文从基于网络的角度研究了可再生能源渗透电力系统的频谱特性。首先,引入了考虑可再生能源渗透率和克朗约简矩阵的电网方程。然后,证明了可再生能源节点数与kron -约简矩阵特征值之间的单调性。研究了kron -约简矩阵的最小特征值与电压稳定性的关系。我们还报告了代数连通性在具有可再生能源渗透的电力系统中的两个应用:同步稳定性和图划分。最后,将引入的频谱特性应用于一个简单的两区系统和中国西藏的一个区域电网。
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