可执行文件
计算机科学
分布式计算
相互依存
智能电网
过程(计算)
网格
功率(物理)
电信网络
布线(电子设计自动化)
电力系统
工程类
电信
计算机网络
电气工程
量子力学
政治学
几何学
数学
物理
法学
操作系统
作者
Xin Liu,Bo Zhang,Bo Chen,Alexander Aved,Dong Jin
标识
DOI:10.1109/tsg.2022.3149973
摘要
Distribution service restoration (DSR) under natural disasters is always a critical and challenging problem for utility companies. An effective solution must not ignore the power-communication interdependency as various systems are getting increasingly connected in the Smart Grid era. In this paper, we propose a two-layer distribution system model with both power and communication components. Based on this model, we formulate the restoration process as a routing problem that schedules the path and action sequence of utility crews that involves repairing damaged components, closing power switches, and enabling communication paths between the control center and remote field devices. Further, we develop a simulation-based method to quantitatively evaluate the restoration process with public reference models of large-scale power systems. The experimental results show that our method improves the total restored energy up to 57.6% and reduces the recovery time up to 63% by considering the power-communication interdependency.
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