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基于统一控制框架的网络化可再生能源-电池储能微电网性能提升方法
Novel Unified Control Framework for Networked RES-BES Microgrids with Enhanced Performance
| 作者 | Shushan Qiu · Kaushik Rajashekara · Rohith Pottekkat |
| 期刊 | IEEE Transactions on Sustainable Energy |
| 出版日期 | 2025年8月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 下垂控制 微电网 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 可再生能源 交直流混合微电网 电池储能系统 统一下垂控制 最大功率捕获 |
语言:
中文摘要
可再生能源的大规模接入促进了分布式能源网络的互联,以最大化利用分布不均的可再生能源。网络化交直流混合微电网在用户侧构建多端区域网络,通过交直流协同互补实现可再生能源与电池储能系统的即插即用集成。然而,互联系统增加了控制复杂性,且可再生能源的突变导致需全网储能协调补偿以避免局部过载。本文提出一种基于统一下垂控制的网络化混合微电网控制框架,支持运行模式无缝切换、功率按需分配,并消除环流与器件过应力。该方法无需调整底层控制即可应对源故障与不对称线路故障,保障可再生能源持续最大功率输出。基于Typhoon-HIL实时仿真平台的案例验证了所提方法的有效性。
English Abstract
The increasing deployment of renewable energy sources (RESs) facilitates the interconnection of distributed energy networks, thereby maximizing the utilization of the unevenly distributed RESs. Networked hybrid ac/dc microgrids enable regional multi-terminal networks at end-user sites, offering plug-and-play integration for RESs and battery energy storage systems (BESs) through synergistic ac/dc complementarity. However, this interconnected configuration introduces increased complexity in control strategies and poses significant power management challenges for RES-BES microgrids, as sudden RES fluctuations demand system-wide BES compensation to prevent local overloads. This paper proposes a unified droop control-based framework for networked hybrid microgrids comprising RESs, BESs and loads. The proposed approach enables seamless transitions between operational modes, proportional power sharing, and enhanced operation without circulating currents or overstressing components. Furthermore, it inherently addresses abrupt source failures and asymmetric line faults without requiring adjustments in the primary control methods, ensuring uninterrupted maximum power harvest of RESs. The effectiveness of the proposed approach is validated through case studies using real-time simulation platform Typhoon-HIL.
S
SunView 深度解读
该统一下垂控制框架对阳光电源ST系列储能变流器和PowerTitan大型储能系统具有重要应用价值。研究提出的网络化交直流混合微电网控制方案,可直接应用于阳光电源多端口储能系统架构,实现SG光伏逆变器与ST储能变流器的即插即用集成。统一下垂控制支持运行模式无缝切换,可优化现有GFM/GFL双模式控制策略;全网储能协调补偿机制能有效解决光伏突变时的局部过载问题,提升PowerTitan系统在大规模新能源接入场景下的稳定性。消除环流与过应力的控制方法可延长SiC功率器件寿命,降低系统损耗。该技术框架可集成至iSolarCloud平台,实现分布式储能网络的智能协调控制,增强阳光电源在工商业微电网和区域能源互联网市场的竞争力。