解算器
计算机科学
弹性(材料科学)
整数规划
线性规划
储能
负荷调节
操作员(生物学)
数学优化
荷载剖面图
网络拓扑
功率(物理)
可靠性工程
分布式计算
电
工程类
电气工程
计算机网络
数学
生物化学
物理
化学
算法
量子力学
抑制因子
转录因子
基因
热力学
程序设计语言
作者
Seyed Amir Mansouri,Emad Nematbakhsh,Mohammad Sadegh Javadi,Ahmad Rezaee Jordehi,Miadreza Shafie‐khah,João P. S. Catalào
标识
DOI:10.1109/eeeic/icpseurope51590.2021.9584609
摘要
This paper presents a dynamic model to improve the resilience of the distribution network during contingent events. In this model, when an event occurs, the system operator maximizes power supply by changing the network topology as well as utilizing the direct load control (DLC) program. The model is implemented on a modified IEEE 69-bus distribution system and includes three types of residential, commercial and industrial loads. First, numerous scenarios are generated based on weather forecasting, and then the problem is solved for high-probability scenarios. It is noteworthy that industrial loads are considered as vital loads and the priority of load supply is for industrial, residential and commercial loads, respectively. The final problem is formulated as mixed-integer linear programming (MILP) problem and solved by CPLEX solver in GAMS software. The effect of dynamic topology on load supply has been investigated. In addition, the impact of using the DLC program and electrical energy storage systems (EES) systems on load supply been studied in detail.
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