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Intelligent Agent-Based Energy Management System for Islanded AC–DC Microgrids

机译:基于智能代理的岛屿AC-DC微电网的能源管理系统

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This article proposes an advanced solution for the energy management of the islanded ac-dc microgrids using an intelligent agent approach. This approach provides islanded ac-dc microgrids with three main operating agents (i.e., ac microgrid, dc microgrid, and system operator agents) communicating with each other at each operating time interval to increase system levels of performance, efficiency, and reliability. Bidirectional communication allows data collection and control command flow between ac microgrid, dc microgrid, and system operator to not only minimize ac and dc operational costs but also minimize ac-dc conversion costs, perform optimal demand shifting and minimize load shedding using a progressive strategy. For the optimization purpose, this article uses an advanced multiobjective particle swarm optimization engine to effectively solve the problem of each agent. To test the precision and operational performance of the proposed solution, a 33-node islanded ac-dc microgrid with diverse ac-dc generating resources and loads is studied.
机译:本文提出了一种使用智能代理方法的岛立AC-DC微电网的能量管理的先进解决方案。这种方法提供了具有三个主要操作代理(即AC Microgrid,DC Microgrid和系统操作员代理)在每个操作时间间隔内互相通信的岛立的AC-DC微电网,以提高系统水平,效率和可靠性。双向通信允许在AC微电网,DC微电网和系统操作员之间进行数据收集和控制命令流,不仅最小化AC和DC运营成本,还可以最大限度地减少AC-DC转换成本,使用渐进策略执行最佳需求移位和最小化负载脱落。对于优化目的,本文使用高级多目标粒子群优化发动机来有效解决每个代理的问题。为了测试所提出的解决方案的精度和操作性能,研究了具有不同AC-DC生成资源和负载的33节点岛AC-DC微电网。

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