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利用电池储能系统解决电力输电网络阻塞问题——以英国为例
Addressing electricity transmission network congestions using battery energy storage systems – a case study of great Britain
| 作者 | Morteza Shafiekhan · Meysam Qadrdan |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 384 卷 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | Examines the potential of BESS to mitigate transmission network congestion and support the integration of renewable energy sources. |
语言:
中文摘要
摘要 英国已设定在2030年前实现清洁电力的目标,并承诺在同一时间段内部署50吉瓦的海上风电装机容量。然而,当前的输电网络尚不具备满足这些雄心勃勃目标的能力,凸显出亟需进行大规模强化,以支持输电层级上日益增长的发电和用电需求。本文研究了将电池储能系统(Battery Energy Storage Systems, BESS)作为非网络化解决方案的应用,提出了一种及时且成本更低的替代方案,用以应对英国(Great Britain, GB)输电瓶颈问题,从而避免传统的电网升级。本研究使用DIgSILENT PowerFactory 2024软件对英国2024年和2030年的输电网络进行建模,重点分析冬季负荷高峰和夏季负荷低谷两种典型场景。通过事故分析和接入容量评估,识别出若干关键性阻塞节点,这些节点在用电高峰期对系统可靠性构成重大风险。本研究聚焦于南威尔士地区,探讨如何应用潮流分解技术来确定BESS部署的最佳位置,以缓解上述阻塞问题。研究结果表明,经过战略性布局的BESS能够有效减轻输电系统的瓶颈压力。在所分析的具体案例中,该非网络化解决方案的等效年化成本显著低于线路加固方案,仅为后者成本的38%至63%。此外,该方法还具有实施周期更短、更有利于可再生能源并网等优势,突显其作为应对输电网络阻塞问题的一种高效解决方案的巨大潜力。
English Abstract
Abstract The UK has set an objective of achieving a clean power by 2030, with a specific commitment to deploying 50 GW of offshore wind capacity within the same timeframe. However, the current transmission network lacks the capacity to accommodate these ambitious goals, highlighting the urgent need for substantial reinforcement to support the increased generation and demand at the transmission level. This paper investigates the integration of Battery Energy Storage Systems (BESS) as a non-networked solution, offering a timely and less expensive alternative to traditional network upgrades to address transmission bottlenecks in Great Britain (GB). Using DIgSILENT PowerFactory 2024, the study models the GB transmission network for 2024 and 2030, focusing on peak winter and minimum summer demand scenarios. Contingency analysis and hosting capacity assessments have identified critical bottlenecks which pose significant risks to system reliability during peak periods. This study focuses on South Wales, examining how flow decomposition techniques can be applied to identify locations for BESS deployment to address these bottlenecks. The findings demonstrate that strategically placed BESS can effectively alleviate transmission system bottlenecks. For the specific case analysed, the equivalent annualised cost of the non-networked solution is significantly lower, ranging from 38 % to 63 % of the cost of line reinforcement. Additionally, this approach offers the advantages of faster implementation and enhanced facilitation of renewable energy integration, underscoring its potential as an efficient solution for addressing transmission network bottlenecks.
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SunView 深度解读
该研究验证了储能系统作为非网络化解决方案缓解输电瓶颈的经济性,年化成本仅为线路改造的38-63%。对阳光电源PowerTitan系列及ST系列PCS具有重要应用价值:1)英国2030年50GW海上风电目标需大规模储能配套,PowerTitan的MW级容量和快速响应特性可有效解决输电阻塞;2)可结合GFM控制技术提升电网支撑能力;3)通过iSolarCloud平台优化BESS选址部署策略,提高新能源消纳率。该场景为阳光电源拓展欧洲输电级储能市场提供技术路径参考。