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储能系统技术 储能系统 微电网 ★ 5.0

基于柔性直流配电网络互联的交直流微电网群分布式自主控制以实现全局经济运行

Distributed Autonomous Control for Global Economic Operation of AC/DC Microgrid Clusters Interconnected by Flexible DC Distribution Network

作者 Xiangyu Wu · Shuaijie Wang · Jingsi Huang · Yin Xu · Josep M. Guerrero
期刊 IEEE Transactions on Sustainable Energy
出版日期 2025年6月
技术分类 储能系统技术
技术标签 储能系统 微电网
相关度评分 ★★★★★ 5.0 / 5.0
关键词 交直流微电网集群 分布式自主控制策略 经济运行 频率/电压控制 协调控制
语言:

中文摘要

本文提出一种基于柔性直流配电网络互联的交直流微电网群分布式自主控制策略,旨在同时实现系统的全局经济运行与频率/电压控制,并满足分布式电源及互联变流器的功率约束。首先建立系统最优控制问题并推导其全局经济调度的KKT条件,进而构建包含分布式电源层、微电网层和微电网群层的三层控制架构。在微电网层设计了分布式的频率/电压与经济调度控制器;在微电网群层提出一种对等式分布式控制方法,实现互联变流器间的协调控制并稳定直流配电网络电压。最后通过时域仿真与实验验证了所提方法的有效性。

English Abstract

This paper presents a distributed autonomous control strategy for AC/DC microgrid clusters interconnected by the flexible DC distribution network to simultaneously achieve the global economic operation and frequency/voltage control of the system while complying with the power limits of DGs and interlinking converters. First, the optimal control problem for the system is formulated and the Karush-Kuhn-Tucker (KKT) condition of the system global economic dispatch is obtained. Then, the three-layer control framework including the distributed generator layer (DG-layer), microgrid layer (MGlayer), and microgrid cluster layer (MGC-layer) is established. In the MG-layer, the distributed frequency/voltage and economic dispatch controllers are designed for each ACMG and DCMG. In the MGC-layer, a distributed peer-to-peer control method is provided to realize the coordinated control among interlinking converters while controlling the voltage of DC distribution network. The coordination method between MG-layer and MGClayer is also designed. Finally, time-domain simulation and experiments are carried out to validate the effectiveness of the proposed methods.
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SunView 深度解读

该分布式自主控制技术对阳光电源PowerTitan储能系统和ST系列储能变流器在微电网集群应用中具有重要价值。研究提出的三层控制架构可直接应用于阳光电源多微网互联项目,通过分布式经济调度算法优化储能系统充放电策略,降低运营成本。柔性直流配电网的对等式协调控制方法可增强ST变流器在直流母线电压稳定和功率分配中的自主协同能力,减少对集中控制器依赖。KKT条件约束的全局经济运行策略可集成至iSolarCloud平台,实现光储微网集群的智能优化调度,提升阳光电源在工商业园区、海岛微网等复杂场景的系统集成竞争力。