考虑动态电价的分布式事件触发配电网络优化电源管理

iEnergy Pub Date : 2024-09-17 DOI:10.23919/IEN.2024.0016
Wenfa Kang;Jianquan Liao;Minyou Chen;Josep M. Guerrero;Kai Sun
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引用次数: 0

摘要

本文介绍了一种新型的配电网络全分布式经济电力调度(EPD)策略,其中集成了动态电价。本文提出了一个双层模型:第一层包括物理配电网络,包括光伏(PV)源、风力涡轮机(WT)发电机、储能系统(ESS)、柔性负载(FLs)和其他非柔性负载。上层由专门负责通信、计算和控制任务的代理组成。与以往的 EPD 策略不同,这种方法结合了从电压约束中得出的动态电价,以确保符合节点电压约束。此外,为了有效解决 EPD 问题,还开发了一种具有事件触发通信协议的快速分布式优化算法。通过数学和仿真分析,证明了所提出算法的效率和快速收敛能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distributed Event-Triggered Optimal Power Management of Distribution Networks Considering Dynamic Tariff
This paper introduces a novel fully distributed economic power dispatch (EPD) strategy for distribution networks, integrating dynamic tariffs. A two-layer model is proposed: the first layer comprises the physical power distribution network, including photovoltaic (PV) sources, wind turbine (WT) generators, energy storage systems (ESS), flexible loads (FLs), and other inflexible loads. The upper layer consists of agents dedicated to communication, calculation, and control tasks. Unlike previous EPD strategies, this approach incorporates dynamic tariffs derived from voltage constraints to ensure compliance with nodal voltage constraints. Additionally, a fast distributed optimization algorithm with an event-triggered communication protocol has been developed to address the EPD problem effectively. Through mathematical and simulation analyses, the proposed algorithm's efficiency and rapid convergence capability are demonstrated.
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