智能电网中的级联故障——分布式发电的效益

Xian Chen, Hieu T. Dinh, B. Wang
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引用次数: 41

摘要

智能电网的设想是结合本地分布式发电,以提高效率和灵活性。然而,如果使用不当,分布式发电可能会危及电网的稳定性。最近,研究人员提出了创新的架构(例如,微电网,本地电网),将本地发电机虚拟化为电网的恒定负载,源或零负载,从而为将分布式发电连接到电网而不牺牲其可靠性提供了巨大的希望。事实上,直观地说,使用这些架构,分布式发电可能会增强电网的稳定性。在本文中,我们开发了一个仿真模型来量化分布式发电在多大程度上可以减轻级联故障。将该模型应用于IEEE电网测试案例,我们发现局部发电,即使只使用少量的局部发电机,也可以显着降低级联故障的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cascading Failures in Smart Grid - Benefits of Distributed Generation
Smart grid is envisioned to incorporate local distributed power generation for better efficiency and flexibility. Distributed generation, when not used carefully, however, may compromise the stability of the grid. Recently, researchers have proposed innovative architectures (e.g., microgrid, LoCal grid) that virtualize a local generator as a constant load, source, or zero load to the grid, thus offering great promise to connect distributed generation into the grid without sacrificing its reliability. In fact, intuitively, using these architectures, distributed generation may enhance the stability of the power grid. In this paper, we develop a simulation model to quantify how much distributed generation can mitigate cascading failures. Applying this model to IEEE power grid test cases, we find that local power generation, even when only using a small number of local generators, can reduce the likelihood of cascading failures dramatically.
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