Energy storage capacity allocation for distribution grid applications considering the influence of ambient temperature

IF 1.6 Q4 ENERGY & FUELS IET Energy Systems Integration Pub Date : 2021-12-24 DOI:10.1049/esi2.12054
Yuhan Wu, Tao Xu, He Meng, Wei Wei, Shuqi Cai, Lingxu Guo
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引用次数: 7

Abstract

Modern distribution networks have an urgent need to increase the accommodation level of renewable energies facilitated by configuring battery energy storage systems (BESSs). In view of the contradictions of BESS capacity, cost, life, and operation environment, an optimal capacity allocation algorithm of BESS in modern distribution networks considering the ambient temperature has been proposed from the perspective of the life cycle cost-benefit optimisation. First, a refined BESS model under the influence of the ambient temperature has been established to accurately track life degradation and charging-discharging efficiencies. Subsequently, an electric vehicle (EV) charging load forecasting model that considers the influence of travel characteristics, traffic congestion and environmental factors has been established. Finally, a bi-level BESS optimisation algorithm has been proposed to maximise the system benefits on the EV charging station side and the grid side, and the marginal ageing cost has been considered while optimising the charging and discharging strategies of BESS, to achieve the best cost-benefit of BESS throughout the life cycle. The simulation results verify the effectiveness and economy of the proposed configuration schemes and operation strategies under different seasons.

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考虑环境温度影响的配电网储能容量分配
现代配电网迫切需要通过配置电池储能系统(BESSs)来提高可再生能源的容纳水平。针对BESS容量、成本、寿命和运行环境之间的矛盾,从生命周期成本效益优化的角度,提出了一种考虑环境温度的现代配电网BESS容量优化分配算法。首先,建立了环境温度影响下的精细化BESS模型,以准确跟踪电池寿命退化和充放电效率。在此基础上,建立了考虑出行特性、交通拥堵和环境因素影响的电动汽车充电负荷预测模型。最后,提出了电动汽车充电站侧和电网侧系统效益最大化的双层优化算法,并在优化充放电策略时考虑了边际老化成本,使电池储能系统在全生命周期内的成本效益达到最佳。仿真结果验证了所提配置方案和不同季节运行策略的有效性和经济性。
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来源期刊
IET Energy Systems Integration
IET Energy Systems Integration Engineering-Engineering (miscellaneous)
CiteScore
5.90
自引率
8.30%
发文量
29
审稿时长
11 weeks
期刊最新文献
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