利用固有结构特性理论识别关键母线和弱传输线

Akintunde Samson Alayande, A. Jimoh, A. Yusuff
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引用次数: 12

摘要

电力系统组件容易受到故障的影响,可能导致孤岛形成,这是非常不希望的,应该避免。为了保证电力系统的安全可靠运行,必须快速检测和提前识别所有可能导致网络级联中断的不安全运行状态,如关键节点和候选传输链路集。因此,本文探讨了内在结构特征理论(ISCT)方法在这方面的相关性,并提出了基于原子理论类比的方法的深刻解决方案。提出了一种能够检测电网中关键母线和弱传输链路的耦合强度指数(CSI)。采用等效的南印度网络的10总线电力系统对该方法的有效性进行了测试。采用Matlab 2013b环境进行仿真。结果表明,该方法对改善应力电网的运行是可行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Identification of critical buses and weak transmission lines using inherent structural characteristics theory
Power system components are susceptible to failures that could result in island formation which is highly undesirable and should be avoided. For a safe and reliable power system operation, all insecure operating states such as critical nodes and sets of candidate transmission links that could cause cascading outages within the networks must be quickly detected and identified in advance. This paper, therefore, investigates the relevance of Inherent Structural Characteristics Theory (ISCT) approach in this respect An insightful solution of the approach based on the atomic theory analogy is proposed. A Coupling Strength Index (CSI), which is capable of detecting the critical buses and weak transmission links within the power network is proposed. The effectiveness of the approach is tested using a 10-bus power system of equivalent Southern Indian network. Matlab 2013b environment is employed for the simulations. The results show viability of the approach for enhancing the operation of stressed power networks.
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