Research on Influence of Time Delay on Critical Modes for Interconnected Grid

Y. Nie, Chiyao Feng, Chunlei Zhang, Qingfeng Zhang
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Abstract

Wide-area control has been suggested to enhance the dynamic performance of interconnected power systems. However, time delay caused by a wide area of signal transmission may be detrimental to the performance of a damping controller for interarea oscillations. Based on Pade approximation, the investigators of the present work convert time delay into a state-space expression and build the linear model of a closed-loop power system with time delay and subsequently build the relationship model that describes the effects of time delay on the critical modes of a power system. Jacobi-Davidson method is employed to study the influence of time delay on the interarea, local, and time delay control modes. Simulation results illustrate the validity of this method in resolving the influence law of time delay and provide theoretical evidence for an interarea damping controller design for a large-scale power system.
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时滞对互联电网临界模式影响的研究
为了提高互联电力系统的动态性能,提出了广域控制方法。然而,由于信号传输的广域导致的时间延迟可能会对阻尼控制器的区域间振荡性能造成不利影响。本文基于Pade近似,将时滞转化为状态空间表达式,建立了具有时滞的闭环电力系统的线性模型,进而建立了描述时滞对电力系统关键模态影响的关系模型。采用Jacobi-Davidson方法研究了时延对区域间、局部和时延控制模式的影响。仿真结果表明了该方法在求解时滞影响规律方面的有效性,为大型电力系统的区域间阻尼控制器设计提供了理论依据。
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