论文标题
基于负载切换组的馈线级微电网能源管理算法用于配电系统中的服务恢复
A Load Switching Group based Feeder-level Microgrid Energy Management Algorithm for Service Restoration in Power Distribution System
论文作者
论文摘要
本文介绍了一个基于负载切换组的能源管理系统(LSG-EMS),用于由一个或多个格式形成网格的分布式能源提供动力的配电馈线的操作微电网。分配馈线上的负载分为可以远程打开和关闭的负载切换组。 LSG-EMS算法被配制为混合企业线性编程(MILP)问题,具有最大化服务载荷的目的功能,同时最大程度地减少开关操作的总数。开发了一组新的拓扑约束,以允许在馈线上形成多个微电网并选择最佳供应路径。客户舒适度是通过最大化客户首选服务期内的供应持续时间并执行最低服务持续时间来解释的。使用实际客户数据在修改后的IEEE 33-BUS系统上证明了该方法。仿真结果表明,LSG-EMS通过选择最佳的供应拓扑来成功协调多个网格形成源,从而最大化关键和非关键负载的供应周期,同时最大程度地减少服务恢复过程中的客户服务中断。
This paper presents a load switching group based energy management system (LSG-EMS) for operating microgrids on a distribution feeder powered by one or multiple grid-forming distributed energy resources. Loads on a distribution feeder are divided into load switching groups that can be remotely switched on and off. The LSG-EMS algorithm, formulated as a mixed-integer linear programming (MILP) problem, has an objective function of maximizing the served loads while minimizing the total number of switching actions. A new set of topology constraints are developed for allowing multiple microgrids to be formed on the feeder and selecting the optimal supply path. Customer comfort is accounted for by maximizing the supply duration in the customer preferred service period and enforcing a minimum service duration. The proposed method is demonstrated on a modified IEEE 33-bus system using actual customer data. Simulation results show that the LSG-EMS successfully coordinates multiple grid-forming sources by selecting an optimal supply topology that maximizes the supply period of both the critical and noncritical loads while minimizing customer service interruptions in the service restoration process.