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Whole-Systems Assessment of the Value of Energy Storage in Low-Carbon Electricity Systems

机译:低碳电力系统储能价值的全系统评估

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Energy storage represents one of the key enabling technologies to facilitate an efficient system integration of intermittent renewable generation and electrified transport and heating demand. This paper presents a novel whole-systems approach to valuing the contribution of grid-scale electricity storage. This approach simultaneously optimizes investment into new generation, network and storage capacity, while minimising system operation cost, and also considering reserve and security requirements. Case studies on the system of Great Britain (GB) with high share of renewable generation demonstrate that energy storage can simultaneously bring benefits to several sectors, including generation, transmission and distribution, while supporting real-time system balancing. The analysis distinguishes between bulk and distributed storage applications, while also considering the competition against other technologies, such as flexible generation, interconnection and demand-side response.
机译:能源存储是关键技术之一,可促进间歇性可再生能源发电和电气化运输与供热需求的有效系统集成。本文提出了一种新颖的全系统方法来评估电网规模储电的贡献。这种方法可同时优化对新一代产品,网络和存储容量的投资,同时将系统运营成本降至最低,并考虑储备和安全要求。对具有高可再生能源份额的英国(GB)系统进行的案例研究表明,储能可在支持实时系统平衡的同时,为多个部门带来收益,包括发电,输电和配电。该分析区分了大容量存储应用程序和分布式存储应用程序,同时还考虑了与其他技术的竞争,例如灵活的生成,互连和需求方响应。

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