Surplus energy in solar home systems as driver for bottom-up grids: When grids emerge from the edge

Ida Fuchs, S. Balderrama, P. C. del Granado, S. Quoilin, Jayaprakash Rajasekharan
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Abstract

In this paper, surplus energy (SE) from solar home systems (SHS) with energy storage is studied from the perspective of bottom-up grids. The paper addresses two central research questions: 1) How much SE do SHS generate depending on system size parameters and load metrics? and 2) Can SE provide the basis for bottom-up grids in rural swarm electrification? We first analyze different SE profiles for different stochastic demands from three households with various PV and battery system sizes. Next, we analyze how these SE profiles can be used to supply additional households with lower or equal demand. We find that the SE is highly dependent on PV size and cannot be significantly reduced by increasing battery size. Demand profiles with high Peak to Average Power Ratio (PAPR) and low Load at Day Time Ratio (LDTR) are shown to have the highest levels of SE. Simulations show that households with PV and battery system can supply several other households with its SE only. This study shows excellent potential for developing a framework model for bottom-up grids through SHS sizing and bottom-up planning of interconnections in rural communities.
家用太阳能系统的剩余能量作为自下而上电网的驱动力:当电网从边缘出现
本文从自下而上电网的角度研究了太阳能家庭储能系统的剩余能量。本文解决了两个中心研究问题:1)根据系统大小参数和负载指标,SHS生成多少SE ?2) SE能否为农村群体电气化中自下而上的电网提供基础?我们首先分析了三个不同光伏和电池系统规模的家庭的不同随机需求的SE曲线。接下来,我们将分析如何使用这些SE配置文件来提供具有较低或相等需求的额外家庭。我们发现SE高度依赖于PV尺寸,不能通过增加电池尺寸来显着降低SE。高峰值与平均功率比(PAPR)和低日间负荷比(LDTR)的需求曲线显示出最高的SE水平。模拟结果表明,拥有光伏和电池系统的家庭可以仅向其他几个家庭提供SE。这项研究显示了通过SHS规模和农村社区互联的自下而上规划来开发自下而上电网框架模型的巨大潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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