Screening Curve Method for Economic Analysis of Household Solar Energy Self-Consumption

Hikaru Hoshino;Yosuke Irie;Eiko Furutani
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Abstract

The profitability of solar energy self-consumption in households, the so-called photovoltaic (PV) self-consumption, is expected to boost the deployment of PV and battery storage systems. This paper develops a novel method for economic analysis of PV self-consumption using battery storage based on an extension of the Screening Curve Method (SCM). The SCM enables quick and intuitive estimation of the least-cost generation mix for a target load curve and has been used for generation planning for bulk power systems. In this paper, we generalize the framework of existing SCM to take into account the intermittent nature of renewable energy sources and apply it to the problem of optimal sizing of PV and battery storage systems for a household. Numerical studies are provided to verify the estimation accuracy of the proposed SCM and to illustrate its effectiveness in a sensitivity analysis, owing to its ability to show intuitive plots of cost curves for researchers or policy-makers to understand the reasons behind the optimization results.
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家庭太阳能自我消费经济分析筛选曲线法
家庭太阳能自我消费(即所谓的光伏(PV)自我消费)的盈利能力有望推动光伏和电池储能系统的部署。本文基于筛选曲线法(SCM)的扩展,开发了一种利用电池储能对光伏自消费进行经济分析的新方法。SCM 可以快速、直观地估算出目标负荷曲线下成本最低的发电组合,已被用于大宗电力系统的发电规划。在本文中,我们对现有 SCM 框架进行了概括,将可再生能源的间歇性考虑在内,并将其应用于家庭光伏发电和电池储能系统的优化选型问题。本文提供了数值研究,以验证所提出的 SCM 估算的准确性,并说明其在敏感性分析中的有效性,因为它能够显示直观的成本曲线图,让研究人员或政策制定者了解优化结果背后的原因。
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2024 Index IEEE Transactions on Energy Markets, Policy and Regulation Vol. 2 Table of Contents IEEE Power & Energy Society Information IEEE Transactions on Energy Markets, Policy, and Regulation Information for Authors Blank Page
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