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储能系统技术 储能系统 地面光伏电站 ★ 5.0

可再生能源社区策略评估的即插即用框架

Plug-and-Play Framework for Assessment of Renewable Energy Community Strategies

作者 J. P. D. Faria · J. A. N. Pombo · S. J. P. S. Mariano · M. R. A. Calado
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
相关度评分 ★★★★★ 5.0 / 5.0
关键词 可再生能源社区 能源共享机制 家庭能源管理系统 两阶段协同能源管理策略 能源分配优化
语言:

中文摘要

欧盟近期监管进步将可再生能源社区REC置于能源政策讨论前沿,重新点燃科学界重大兴趣和辩论。然而,尽管有所发展,REC仍面临需要解决和研究以确保其发展和经济可持续性的若干挑战。关键挑战之一是创建有效公平的能源共享机制。因此,本研究提出家庭能源管理系统HEMS和两阶段协作能源管理策略TCEMS,基于技术和经济方面管理REC,促进满足个人和集体要求的高效运行。这是合作协作策略,其中可再生能源生产资源和储能系统以综合公平方式共享,确保REC内可再生能源公平平衡分配。策略第一阶段,采用动态分配密钥KoR自适应分配REC参与者间的可再生能源生产。第二阶段,使用混合二进制整数规划MBIP高效管理能源盈余和赤字,确保其在参与者储能系统间最优分配。为评估所提策略性能,进行一年计算仿真,然后在试点REC进行24小时实验验证。结果确认策略有效性和鲁棒性,表明降低对公用电网依赖并优化本地能源资源利用。

English Abstract

Recent regulatory advancements by the European Union have positioned Renewable Energy Communities (RECs) at the forefront of energy policy discussions, reigniting significant interest and debate within the scientific community. However, despite all the developments, RECs still face several challenges that need to be addressed and researched to ensure their development and economic sustainability. One key challenge is the creation of effective and fair energy-sharing mechanisms. Thus, this study proposes a Home Energy Management System (HEMS) and a Two-Stage Collaborative Energy Management Strategy (TCEMS) to manage a REC based on both technical and economic aspects, promoting an efficient operation that meets both individual and collective requirements. This is a cooperative and collaborative strategy in which renewable energy production resources and storage systems are shared in an integrated and equitable manner, ensuring a fair and balanced distribution of renewable energy within the REC. In the strategy’s first stage, a dynamic Key of Repartition (KoR) is employed to adaptively allocate renewable energy production among REC participants. In the second stage, Mixed Binary Integer Programming (MBIP) is used to efficiently manage energy surpluses and deficits, ensuring their optimal allocation across participants storage systems. To evaluate the proposed strategy’s performance, a one-year computational simulation was conducted, followed by an experimental validation in a pilot REC over a 24-hour period. The results confirmed the effectiveness and robustness of the strategy, indicating reduced dependence on the utility power grid and optimized utilization of local energy resources.
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SunView 深度解读

该能源社区管理技术对阳光电源虚拟电厂和社区储能具有重要应用价值。阳光PowerStack社区储能系统需要公平高效的能量共享机制。该研究的两阶段协作策略和动态分配算法可集成到阳光EMS能量管理系统,实现社区内光伏储能资源的智能调度。在工商业园区和住宅社区场景下,该技术可优化阳光储能系统在多用户间的能量分配,提升本地消纳率,降低电网依赖。结合阳光iSolarCloud云平台的能源管理能力,该框架可支持P2P能源交易和虚拟电厂聚合,实现社区能源自治和经济效益最大化,推动分布式能源和储能的规模化应用。