考虑多驱动因素的电-气集成系统级联失效模型

Qiyun Cheng, Taiping Yuan, Xianzhe Liang, Z. Hu, Kai Ye
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摘要

在电-气集成系统中,级联故障的传播给系统安全带来了不可避免的威胁。在本文中,我们提出了一个新的模型来描述受多种驱动因素影响的电力和天然气电网之间级联故障的演化过程。在电网级联故障仿真中,考虑了继电保护隐性故障、过载线路停电、孤岛解耦平衡、调度中心故障等因素。此外,在燃气网络级联故障仿真中,还考虑了超载管道的拆除和优化调度等因素。在交替迭代的基础上,从时间和空间的角度构建了IEGS的级联失效模型。仿真结果表明,该模型能有效地描述耦合系统在多驱动因素作用下的级联故障演化过程。
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Cascading Failure Model of Integrated Electricity-Gas System Considering Multiple Driving Factors
The propagation of cascading failures in an integrated electricity-gas system (IEGS) brings an inevitable threat to system safety. In this paper, we propose a novel model to describe the evolution process of cascading failures between electricity and gas grids that are affected by multiple driving factors. Hidden faults of relay protection, overloaded line outage, islanding decoupling and balancing, dispatch center faults, and other factors are considered in the simulation of cascading failures in power grids. Moreover, factors such as the removal of overloaded pipelines and the optimal dispatch are considered in the simulation of cascading failures in the gas network. Based on alternate iterations, a cascading failure model of IEGS is constructed from the perspective of time and space. The simulation results show that the proposed model can effectively describe the evolution process of cascading failures of coupling systems by multiple driving factors.
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