← 返回
风电变流技术 ★ 5.0

到2030年实现80%可再生能源:互联线路、电池与需求响应

Unlocking 80% renewables by 2030: interconnectors, batteries, and demand response

作者 Faraedoon Ahmeda · Aoife M.Foleya · Sean Mc Loone · Robert J.Best · Dlzar Al Kez
期刊 Energy Conversion and Management
出版日期 2025年1月
卷/期 第 344 卷
技术分类 风电变流技术
相关度评分 ★★★★★ 5.0 / 5.0
关键词 综合单一电力市场 可再生能源 风电 电力市场模型 输电基础设施
语言:

中文摘要

摘要 爱尔兰单一电力市场(Integrated Single Electricity Market, ISEM)是覆盖爱尔兰共和国和北爱尔兰的电力批发市场,其设定了到2030年实现80%可再生能源的雄心勃勃的目标。风能预计将在这一转型过程中发挥核心作用,但其固有的波动性和不确定性带来了重大挑战。本研究基于PLEXOS平台开发了一种新型电力市场模型,该模型纳入了现有的交流输电基础设施以及规划中通往大不列颠和法国的互联线路。模型使用2022年的实际数据进行了验证,并进一步扩展以评估2030年的多种情景,实现了超过80%的可再生能源渗透率。研究聚焦于北爱尔兰,重点分析了关键技术和措施——包括需求响应、电池储能以及互联线路——在实现上述目标中的作用。这些技术被评估其在高比例非同步电源接入条件下对电网灵活性与安全性的互补性贡献。本分析探讨了风电弃电率、二氧化碳排放量、电力发电成本、批发电价、净收益以及最优互联容量等问题。研究结果表明,这些技术具备缓解风电波动性、降低排放和减少系统成本的潜力,同时能够维持电力系统的稳定性。本研究提供的洞见对于输电系统运营商制定支持向以可再生能源为主导的电网转型的战略与政策至关重要。该研究为致力于实现高比例可再生能源目标的同时确保电网安全与经济效率的地区提供了有价值的指导。

English Abstract

Abstract The Integrated Single Electricity Market (ISEM) is the wholesale electricity market across the Republic of Ireland and Northern Ireland, and has an ambitious target of 80% renewable energy by 2030. Wind power is expected to play a central role in this transition, but its inherent variability and uncertainty present significant challenges. This study develops a novel electricity market model using PLEXOS, incorporating existing alternating current transmission infrastructure and planned interconnectors with Great Britain and France. The model was validated against 2022 data and extended to evaluate scenarios for 2030, achieving over 80% renewable penetration. Focusing on Northern Ireland, the study examines the role of key technologies, demand response, battery storage, and interconnectors to meet this target. These technologies are evaluated for their complementary contributions to grid flexibility and security under high levels of system non-synchronous penetration. This analysis explores wind power curtailment, CO 2 emissions, electricity generation costs, wholesale prices, net revenues, and optimal interconnection capacities. Findings demonstrate the potential of these technologies to mitigate wind power variability, reduce emissions, and lower costs while maintaining system stability. Insights from this research are critical for transmission system operators to develop strategies and policies supporting the transition to a renewable-dominated grid. This study provides valuable guidance for regions pursuing ambitious renewable energy targets while ensuring grid security and economic efficiency.
S

SunView 深度解读

该研究针对80%可再生能源渗透率下的电网灵活性需求,与阳光电源ST系列储能变流器及PowerTitan系统高度契合。研究强调的需求响应、储能系统与互联互通协同优化,可指导我司储能PCS的GFM/GFL控制策略升级,特别是在高比例非同步电源场景下的虚拟同步机技术应用。风电消纳、成本优化及电网稳定性分析为iSolarCloud平台的预测性维护算法提供参考,助力爱尔兰等欧洲市场的储能系统解决方案落地,提升系统经济性与安全性。