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Sustainability from the Occurrence of Critical Dynamic Power System Blackout Determined by Using the Stochastic Event Tree Technique

机译:通过使用随机事件树技术确定的关键动态电力系统停电的可持续性

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摘要

With the advent of advanced technology in smart grid, the implementation of renewable energy in a stressed and complicated power system operation, aggravated by a competitive electricity market and critical system contingencies, this will inflict higher probabilities of the occurrence of a severe dynamic power system blackout. This paper presents the proposed stochastic event tree technique used to assess the sustainability against the occurrence of dynamic power system blackout emanating from implication of critical system contingencies such as the rapid increase in total loading condition and sensitive initial transmission line tripping. An extensive analysis of dynamic power system blackout has been carried out in a case study of the following power systems: IEEE RTS-79 and IEEE RTS-96. The findings have shown that the total loading conditions and sensitive transmission lines need to be given full attention by the utility to prevent the occurrence of dynamic power system blackout.
机译:随着智能电网先进技术的出现,通过竞争力的电力市场和关键系统突发事件的强调和复杂的电力系统运行中可再生能源的实施,这将施加更高的动态动力系统停电的概率较高的概率。本文提出了所提出的随机事件树技术,用于评估动态电力系统停电的可持续性,从临界系统造成的含义产生诸如总负载条件的快速增加和敏感的初始传输线跳闸。在以下电力系统的情况下,在以下电力系统的情况下进行了广泛的动态电力系统停电:IEEE RTS-79和IEEE RTS-96。研究结果表明,需要通过该实用程序充分关注总装载条件和敏感传输线,以防止动态电力系统停电的发生。

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