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Economic benefits of combining self-consumption enhancement with frequency restoration reserves provision by photovoltaic-battery systems

机译:将自耗增强与光伏电池系统提供的频率恢复储备相结合的经济利益

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Residential and commercial photovoltaic (PV) battery systems are increasingly being deployed for local storage of excess produced PV energy. However, battery systems aimed at increasing self-consumption are not constantly put to use. Additional battery storage capacity is available for a second application to improve the profitability of an energy storage system. One of these options is the provision of frequency restoration reserves (FRR) to the electricity balancing market. This provision can be either negative to compensate for excess power supply, or positive to compensate for excess demand on the power market. This study assesses the benefits for residential and commercial PV-battery systems by combining PV energy storage for higher self-consumption with provision of FRR. Six battery storage dispatch strategies were developed and assessed on the technical and economic performance of 48 residential and 42 commercial PV-battery systems. These systems were modelled over their economic lifetime with a time resolution of 5 min and with historical energy consumption measurements and market prices. FRR provision results in a small drop in the self-consumption rate of 0.5%. However annual revenues are significantly increased. Using battery storage systems only for self-consumption is not profitable with the assumptions used in this study. Provision of negative FRR substantially reduces the electricity bought with the consumption tariff and increases investment attractiveness substantially. Prioritizing the provision of FRR over self-consumption enhancement results in even higher revenues, but significantly reduces self-consumption. We recommend FRR provision to economically investment in residential battery storage systems. Commercial systems need prioritization of both positive and negative FRR provision over self-consumption for a cost-effective investment. In conclusion, combining enhancement of PV self-consumption with the provision of frequency restoration reserves leads to profitable investments.
机译:住宅和商业光伏(PV)电池系统正越来越多地用于将多余的PV能量本地存储。但是,旨在增加自耗的电池系统并未经常使用。额外的电池存储容量可用于第二个应用程序,以提高能量存储系统的盈利能力。这些选择之一是向电力平衡市场提供频率恢复储备(FRR)。该规定可以是负数以补偿过多的电源,也可以是正数以补偿电力市场上的过量需求。这项研究通过结合可提供更高自耗的PV能量存储和提供FRR来评估住宅和商业PV电池系统的优势。针对48个住宅和42个商用光伏电池系统的技术和经济绩效,制定并评估了六种电池存储调度策略。这些系统在其经济生命周期内建模,时间分辨率为5分钟,并具有历史能耗测量和市场价格。 FRR规定导致自消费率小幅下降0.5%。但是,年收入显着增加。在本研究中使用的假设条件下,仅将电池存储系统用于自耗是无利可图的。负FRR的提供大大减少了用电价购买的电力,并大大提高了投资吸引力。优先提供FRR而不是增强自消费功能可带来更高的收入,但会大大降低自消费能力。我们建议提供FRR,以经济地投资于住宅电池存储系统。商业系统需要优先考虑正向和负向FRR的提供,而不是自给自足,以实现具有成本效益的投资。总之,将提高光伏自耗与提供频率恢复储备相结合,可以带来可观的投资。

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