Limit cycle in the ultra-low-frequency oscillation of islanded power systems

Xiaomin Lu, Lei Chen, Yiwei Zhang, Y. Min, Maohai Wang
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引用次数: 6

Abstract

Ultra-low-frequency oscillation with almost constant amplitude is a kind of frequency oscillation in power system. It has occurred in several hydro-dominant islanded power systems. With the nonlinearity of hydraulic turbines, a nonlinear model of power system is built in the paper. Stability and performance of both linear and nonlinear models are analyzed and compared. Particularly stable limit cycle could appear in the nonlinear dynamic model. Within a range of parameters, the equilibrium point of the dynamic system is unstable, while there is a stable limit cycle around it. System trajectories converge to this attractor and oscillate with constant amplitude. Limit cycle in the nonlinear model can explain the ultra-low-frequency oscillation of an island power system with ±800kV HVDC transmission to other grids in China and provides a new mechanism of frequency oscillation in islanded hydro-dominant power systems.
孤岛电力系统超低频振荡中的极限环
超低频振荡是电力系统中频率振荡的一种。它发生在几个以水力为主的岛屿电力系统中。针对水轮机的非线性特性,建立了电力系统的非线性模型。对线性和非线性模型的稳定性和性能进行了分析和比较。特别是在非线性动力学模型中会出现稳定的极限环。在一定的参数范围内,动态系统的平衡点是不稳定的,而其周围存在一个稳定的极限环。系统轨迹收敛于这个吸引子并以恒定振幅振荡。非线性模型中的极限环可以解释中国±800kV高压直流输电网的孤岛电力系统的超低频振荡,为孤岛水电主导电力系统的频率振荡提供了一种新的机制。
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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