配电系统恢复的MILP建模框架研究

Bo Chen, Z. Ye, Chen Chen, Jianhui Wang
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引用次数: 0

摘要

近几十年来,大规模停电和极端天气事件引起了人们对提高电力基础设施恢复能力的关注。配电服务恢复(DSR)是停电管理系统中的一项基本应用,它为系统操作员提供停电时的恢复解决方案。随着配电发电机和远程控制设备在配电系统中的应用越来越多,需要一个先进的DSR框架来进行最佳协调恢复,以实现最大的恢复性能。本文介绍了一种DSR建模框架,该框架可以在存在远程控制交换机、手动操作交换机和可调度dg的情况下生成最优切换序列和估计恢复时间。给出了变时间步长模型和固定时间步长模型两种数学模型,并进行了比较。提出了一种混合整数线性规划模型,并通过IEEE 123节点测试馈线对其有效性进行了评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Toward a MILP Modeling Framework for Distribution System Restoration
Large-scale blackouts and extreme weather events in recent decades raise the concern for improving the resilience of electric power infrastructures. Distribution service restoration (DSR), a fundamental application in outage management systems, provides restoration solutions for system operators when power outages happen. As distribution generators (DGs) and remotely controllable devices are increasingly installed in distribution systems, an advanced DSR framework is needed to perform optimally coordinated restoration that can achieve maximal restoration performance. This paper introduces a DSR modeling framework, which can generate optimal switching sequences and estimated time of restoration in the presence of remotely controllable switches, manually operated switches, and dispatchable DGs. Two mathematical models, a variable time step model and a fixed time step model, are presented and compared. The proposed models are formulated as a mixed-integer linear programming model, and their effectiveness is evaluated via the IEEE 123 node test feeder.
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