基于复杂网络理论的大规模分布式发电集成电力系统易损性评估

Chengxi Liu, Quan Xu, Zhe Chen, C. Bak
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引用次数: 20

摘要

电力系统作为最广域的工业网络,可以将其建模为具有边和顶点的图,分别表示电网的线路和母线。复杂网络理论等方法在识别电网脆弱性、分析电网偶然性、防止电网级联停电等方面具有重要意义。当电力系统与分布式发电集成时,配电级的分散发电取代了部分输电级的集中发电。DG机组可以提高电力系统的可靠性,缩短电源与负荷之间的电气距离,缓解远距离大容量输电,提高效率。本文提出了结构脆弱性指数(SVI)、应急脆弱性指数(CVI)和运行脆弱性指数(OVI)等脆弱性指标来评价DG对电力系统脆弱性的影响。在DIgSILENT/PowerFactory中进行仿真,评估93总线测试电力系统的脆弱性,识别脆弱线路和脆弱母线,评估电网与DG机组集成后脆弱性指标的改善情况,为未来DG机组的规划优化提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Vulnerability evaluation of power system integrated with large-scale distributed generation based on complex network theory
As the most wide-area industrial network, the power system can be modeled as a graph with edges and vertices, which represent the lines and buses of the power grid respectively. Further methodologies such as complex network theory may help in identifying the vulnerability of power grid, analyzing the contingency, preventing cascading blackouts and so on. When power system is integrated with distributed generation (DG), decentralized generation at distribution level replaces some of the centralized generation at transmission level. DG units are able to improve the reliability of the power system, shorten the electrical distance between the sources and loads, alleviate the long-distance large-capacity transmission, and increase the efficiency. This paper proposes several vulnerability indices, such as structural vulnerability index (SVI), contingency vulnerability index (CVI) and operational vulnerability index (OVI) to evaluate the impact of DG to power system vulnerability. The simulation in DIgSILENT/PowerFactory is conducted to assess the vulnerability of a 93-bus test power system, identify the vulnerable lines and buses, evaluate the improvement of the vulnerability index when the network is integrated with DG units, and may further to optimize the planning DG units in the future.
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