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Residential Battery Energy Storage Sizing and Profitability in the Presence of PV and EV

机译:PV和EV存在的住宅电池储能尺寸和盈利能力

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Residential battery energy storage systems (BESS) are having an important role in transitioning towards low carbon communities. However, BESS capital cost remains questionable. In this work, an optimization-based BESS sizing algorithm is developed to maximize the customer’s profitability by minimizing the electricity import for 162 combinations of demand, solar photovoltaic (PV) and electric vehicle (EV). The sizing algorithm results are utilized in introducing empirical formulas that ease the determination of the near-optimal BESS capacity. The annual savings are quantified for various cases under different tariff rates and the BESS viability is investigated for new installations over the next 10 years. The results show that the residential BESS can be profitable in the UK starting from 2024 without any subsidy for the time of use tariffs.
机译:住宅电池储能系统(BESS)在朝向低碳群落过渡方面具有重要作用。 然而,BESS CAPITING成本仍然有所怀疑。 在这项工作中,开发了一种基于优化的BESS大小尺寸算法,通过最大限度地减少了162个需求,太阳能光伏(PV)和电动车辆(EV)的电力进口来最大化客户的盈利能力。 施胶算法的结果用于引入易于确定近最佳贝斯容量的经验公式。 每年的节省量为各种案件,在不同的关税税率下,并在未来10年内调查了新安装的贝丝存活率。 结果表明,住宅贝尔斯在英国可以在2024年开始在英国盈利,没有任何补贴资产时间。

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