Congestion-induced wind curtailment mitigation using energy storage

M. Moradzadeh, B. Zwaenepoel, J. Van de Vyver, L. Vandevelde
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引用次数: 10

Abstract

Allowing the connection of additional renewable energy sources (RES) in areas with limited transmission capacity is becoming of a serious concern. Building new transmission lines only provides a long-term solution to cope with this issue due to the fact that it takes much longer time (up to 5-10 years) compared to time needed to build new wind farms (about 1 year). Storage is proven to be an effective solution to make maximal use of existing grid infrastructures in the short-term. This paper proposes a cost-benefit optimization formulation for optimally sizing the storage in a wind-storage system which is connected to an external spot market via limited transmission lines. A small test system is studied in order to find the optimal size of storage to avoid congestion by allowing revenue to be generated only via reducing the congestion-induced wind curtailment. Additional revenue streams can be also included to maximize the monetary value of the wind-storage system.
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利用储能缓解拥堵引起的弃风
允许在输电能力有限的地区连接额外的可再生能源(RES)正成为一个严重的问题。建设新的输电线路只能提供应对这一问题的长期解决方案,因为与建设新的风电场所需的时间(大约1年)相比,它需要更长的时间(长达5-10年)。存储被证明是在短期内最大限度地利用现有电网基础设施的有效解决方案。针对通过有限输电线路与外部现货市场相连接的风力发电系统,提出了一种成本效益优化公式。研究了一个小型测试系统,以便通过减少由拥塞引起的弃风来产生收益,从而找到存储的最佳大小,以避免拥塞。还可以包括额外的收入流,以最大限度地提高风力储存系统的货币价值。
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