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通过赋能智能逆变器增强不平衡微电网的可再生能源承载能力

Enhancing Renewable Energy Hosting Capacity in Unbalanced Microgrids via Empowering Smart Inverters

作者 Hossam H. H. Mousa · Karar Mahmoud · Matti Lehtonen
期刊 IEEE Access
出版日期 2025年1月
技术分类 储能系统技术
技术标签 储能系统 地面光伏电站 微电网 可靠性分析
相关度评分 ★★★★★ 5.0 / 5.0
关键词 可再生能源 储能系统 不平衡微电网 智能逆变器控制 协调规划策略
语言:

中文摘要

本文提出不平衡微电网中可再生能源RES和储能系统ESS的协调规划策略。该方法旨在缓解电压不平衡、减少功率损耗、缓解馈线拥塞,并最大化并网不平衡微电网中RES的承载能力HC。通过为光伏PV和ESS逆变器采用智能逆变器控制,该策略在最小化运行区域与公用电网UG间功率交换的同时增强额外RES集成。为实现该雄心目标,采用智能逆变器控制功能,包括PV逆变器的组合模式、伏安VV、伏瓦VW,以及ESS逆变器的VW。IEEE 123节点测试系统分为六个运行区域作为案例研究,包含插电式电动汽车PEV需求和风电分布式发电DG。使用MATLAB和OpenDSS开发元启发式算法进行DG和ESS最优部署。结果显示显著改进,包括馈线拥塞减少16%、PV渗透率增加150%、功率损耗减少13%、对UG依赖降低,确保增强的电能质量和系统可靠性。

English Abstract

This article presents a coordinated planning strategy for renewable energy sources (RESs) and energy storage systems (ESSs) in unbalanced microgrids. The approach aims to mitigate voltage unbalance, reduce power losses, alleviate feeder congestion, and maximize the hosting capacity (HC) of RESs in grid-connected unbalanced microgrids. By employing smart inverter control for photovoltaic (PV) and ESS inverters, the strategy enhances the integration of additional RESs while minimizing power exchange between operational zones and the utility grid (UG). To achieve such an ambitious goal, smart inverter control functions are employed, including combined mode, volt-var (VV), volt-watt (VW) for Photovoltaic (PV) inverters, and VW for ESS inverters. The IEEE 123-bus test system, divided into six operational zones, is used as a case study, incorporating plug-in electric vehicle (PEV) demand and wind-based distributed generation (DG). A metaheuristic algorithm is developed for optimal DG and ESS deployment using MATLAB and OpenDSS. The results demonstrate significant improvements, including a 16% reduction in feeder congestion, a 150% increase in PV penetration, a 13% reduction in power losses, and decreased reliance on the UG, ensuring enhanced power quality and system reliability.
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SunView 深度解读

该智能逆变器控制技术与阳光电源光储微电网解决方案高度契合。阳光SG系列光伏逆变器和PowerTitan储能变流器支持伏安伏瓦等智能控制功能。协调规划策略可应用于阳光iSolarCloud平台的光储协同优化。电压不平衡缓解和功率损耗降低与阳光电能质量改善目标一致。150%的光伏渗透率提升验证智能逆变器控制的价值。该研究展示的多区域协调和元启发式优化方法,可支撑阳光开发更先进的微电网规划和运行优化工具,提升可再生能源消纳能力和系统经济性。