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光伏发电技术 ★ 5.0

关于微能源控制单元

MECU)集成电网的未来

作者 Baihe Su · Yu-Chuan Li · Zhijie Liu · Ke-Jun Li · Zhenshan Huang · Yuanzong Song
期刊 IEEE Transactions on Industry Applications
出版日期 2025年6月
技术分类 光伏发电技术
相关度评分 ★★★★★ 5.0 / 5.0
关键词 分布式光伏 微能源控制单元 能源自平衡 暂态稳定支持 高渗透率光伏
语言:

中文摘要

随着可再生能源应用的推广,分布式光伏发电已成为一种重要的电源形式。越来越多的分布式光伏通过传统变流器接入配电系统。随着光伏渗透率的不断提高,由于光伏电源固有的随机性和波动性,电网面临着诸多挑战。微能源控制单元(MECU)作为一种安全、经济、高效利用光伏电源的替代方案被提出。基于多端口结构,MECU连接光伏、储能、电网和需求侧负载。MECU具有能量自平衡、暂态稳定支撑、灵活的需求侧整合以及电能质量改善等优势。针对不同应用场景开发了两款MECU样机。轻型MECU专为空间受限的小容量光伏系统设计;模块化可堆叠公共母线MECU(MSC - MECU)用于大功率分布式光伏并网场景,如屋顶光伏系统。实验结果表明,MECU实现了能量自平衡和暂态稳定支撑。在高光伏渗透率的情况下,MECU可以成为确保电力系统可靠运行的有效解决方案。

English Abstract

With promoting the application of renewable energy, distributed photovoltaic (PV) generation has become an important form of electrical source. More and more distributed PVs are connected into the power distribution system via traditional converters. With the continuous increase of PV penetration, the power grid is facing many challenges due to the inherent randomness and fluctuations of PV sources. Micro Energy Control Unit (MECU) is proposed as an alternative approach for the safe, economical, and efficient utilization of PV sources. Based on a multi-port structure, MECU connects photovoltaics, energy storage, the grid, and demand side loads. MECU can offer advantages of energy self-balancing, transient stability support, flexible demand-side integration, and power quality improvement. Two prototypes of MECU are developed for different application scenarios. Light-MECU is designed for small-capacity PV systems with strict space limits; The Modular Stackable Common-bus MECU (MSC-MECU) is used in high-power distributed PV grid-connected scenarios, such as rooftop PV systems. Experimental results show that MECU achieves energy self-balancing and transient stability support. MECU can be an effective solution for ensuring the reliable operation of power systems in the case of high PV penetration.
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SunView 深度解读

该MECU集成电网技术与阳光电源多能协同战略高度契合。在产品应用层面:ST储能系统可作为MECU核心单元,通过能量管理算法实现源-荷-储协同优化;SG系列逆变器的GFM构网型控制技术可增强MECU自主调控能力,提升分布式光伏并网稳定性;iSolarCloud平台可延伸为MECU集群管理系统,实现多站点协同调度。技术启发:文中提出的分层协同控制架构可优化PowerTitan储能系统的多机并联控制策略,MECU保护机制可完善光储一体化方案的故障穿越能力,为阳光电源构建智能配电网整体解决方案提供理论支撑,推动从单一设备供应商向能源管理系统集成商转型。