论文标题

计划低碳分布电源系统:评估储能的作用

Planning low-carbon distributed power systems: Evaluating the role of energy storage

论文作者

Mao, Jiachen, Jafari, Mehdi, Botterud, Audun

论文摘要

本文将储能系统的数学表述引入了一个生成能力扩展框架中,以评估存储在分布式电力系统脱碳中的作用。该建模框架是动态充电/放电效率和最大骑自行车功率以及锂离子电池系统的循环和日历降解。小规模分布式电力系统的结果表明,将电池的动态效率和循环能力纳入生成计划问题并没有显着改变最佳的生成投资组合,同时增加了实质性的计算负担。相比之下,电池降解的核算会导致大幅不同的产生扩张结果,尤其是在较大的储能能力的深度脱碳场景中。根据这项研究中使用的假设,发现仅在严格的碳排放限制下,电池能量存储在2020年在经济上可行。相比之下,鉴于预计的技术进步和相应的成本降低,电池储能具有有吸引力的选择,可以在2050年进行深度脱碳。

This paper introduces a mathematical formulation of energy storage systems into a generation capacity expansion framework to evaluate the role of energy storage in the decarbonization of distributed power systems. The modeling framework accounts for dynamic charging/discharging efficiencies and maximum cycling powers as well as cycle and calendar degradation of a Li-ion battery system. Results from a small-scale distributed power system indicate that incorporating the dynamic efficiencies and cycling powers of batteries in the generation planning problem does not significantly change the optimal generation portfolio, while adding substantial computational burden. In contrast, accounting for battery degradation leads to substantially different generation expansion outcomes, especially in deep decarbonization scenarios with larger energy storage capacities. Under the assumptions used in this study, it is found that battery energy storage is economically viable for 2020 only under strict carbon emission constraints. In contrast, given the projected technology advances and corresponding cost reductions, battery energy storage exhibits an attractive option to enable deep decarbonization in 2050.

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