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首页> 外文期刊>SIAM Journal on Control and Optimization >STABILITY ANALYSIS OF POWER SYSTEMS: A NETWORK SYNCHRONIZATION PERSPECTIVE
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STABILITY ANALYSIS OF POWER SYSTEMS: A NETWORK SYNCHRONIZATION PERSPECTIVE

机译:电力系统稳定性分析:网络同步透视图

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A power network is a large-scale and highly nonlinear dynamical complex system with generators and loads interconnected in a network structure. The transient stability of the power system that we study here refers to its ability for bus angles to remain in synchronism. The usual view of a stable power system is in terms of being able to return from the postfault state to a system equilibrium after severe failures or faults occur. In fact, power systems experience instantaneous load and generation fluctuations even in the absence of system faults. This paper reframes the stability definition in terms of continuous synchronous behavior and looks at the stability of power systems as the capability of withstanding these various fluctuations as external disturbances. The new stability definition is characterized by the property that angles stay cohesive with each other and frequencies of generators stay bounded. The main objective is to establish a stability analysis method based on a class of new energy functions. An important stability lemma is proposed for nonlinear systems which later is used to derive the phase cohesiveness and frequency boundedness conditions. Motivated by the recent study of complex networks, coupled phase oscillators, and synchronization of power systems, the paper also derives a purely algebraic condition showing explicitly how the stability of the power network is related to the underlying network topology, system parameters and affected by the disturbances.
机译:电网是具有在网络结构中互连的发电机和负载的大规模和高度非线性动态复杂系统。我们研究的电力系统的瞬态稳定性是指其总线角度保持同步的能力。稳定电力系统的通常视图是能够在严重故障或故障发生后从后跳状态从后退状态返回到系统均衡。实际上,即使在没有系统故障的情况下,电力系统也经历瞬时负载和产生波动。本文在连续同步行为方面令人透露稳定性定义,并看看电力系统的稳定性,因为承受这些各种波动作为外部干扰。新的稳定性定义的特征在于角度彼此保持粘合的性质,并且发电机的频率保持界限。主要目的是基于一类新能源功能建立稳定性分析方法。提出了一种重要的稳定性引理,用于非线性系统,该非线性系统用于导出相粘合性和频率偏移条件。通过最近的复杂网络,耦合阶段振荡器和电力系统同步研究的动机,该论文还导出了明确的代数状况,示出了电力网络的稳定性如何与底层网络拓扑,系统参数和受影响的影响干扰。

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