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Using electrical energy storage in residential buildings - Sizing of battery and photovoltaic panels based on electricity cost optimization

机译:在住宅建筑中使用电能存储-基于电力成本优化的电池和光伏板尺寸

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The popularity of small-scale residential energy production using photovoltaic power generation is predicted to increase. Self-production of electricity for self-consumption has become profitable mainly because of high-distribution costs and taxes imposed by the service providers on commercially produced electricity or because of the subsidies which reduce installation costs. Electrical energy storage can be used to increase the self-consumption potential of photovoltaic power. Additionally, electrical energy storage can lead to other benefits such as demand response or avoiding high load peaks. In this study, the profitability and sizing of a photovoltaic system with an associated electrical energy storage are analyzed from an economic perspective. The novel theory of sizing for profitability is presented and demonstrated using case studies of an apartment building and detached houses in Finland. To maximize the benefits, several alternative models for electricity metering and pricing are used and compared. The results demonstrated that the optimal size of the photovoltaic system could be increased by using electrical energy storage and suitable electricity pricing. This could lead to an increasing amount of photovoltaic production in the residential sector. Additionally, it is possible that when all the incentives are taken into account, electrical energy storage in combination with photovoltaic power generation would be more profitable than photovoltaic power generation alone. Photovoltaic power generation also increased the profitability of electrical energy storage, which could mean that the implementation of electrical energy storage in the residential sector could likewise increase.
机译:预计使用光伏发电的小型住宅能源生产的普及将会增加。自用电力的自产自用已经变得有利可图,这主要是由于服务提供商对商业生产的电力征收高昂的配电成本和税收,或者是因为补贴降低了安装成本。电能存储可用于增加光伏发电的自耗电势。另外,电能存储可以带来其他好处,例如需求响应或避免高负载峰值。在这项研究中,从经济的角度分析了具有相关电能存储的光伏系统的盈利能力和规模。通过对芬兰一栋公寓楼和独立式住宅的案例研究,提出并论证了用于盈利的规模调整的新理论。为了使收益最大化,使用并比较了几种用于电表和电价的替代模型。结果表明,通过使用电能存储和适当的电价可以增加光伏系统的最佳尺寸。这可能会导致住宅部门光伏发电量的增加。另外,有可能在考虑所有激励因素的情况下,与光伏发电相结合的电能存储将比单独的光伏发电更有利可图。光伏发电还提高了电能存储的盈利能力,这可能意味着住宅领域电能存储的实施也可能增加。

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