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Providing frequency control reserve with photovoltaic battery energy storage systems and power-to-heat coupling

机译:通过光伏电池储能系统和功率热耦合提供频率控制储备

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摘要

The number of households with photovoltaic battery storage systems is steadily growing, and so is the number of heat pump installations. An integrated home combines domestic battery systems and a heat pump for power-to-heat coupling. During winter, storage systems in an integrated home are not used to their full capacity due to low solar radiation. This potential can be used to enhance the economics by applying a dual-use scheme. In this publication, an integrated home that participates in the frequency control reserve market is investigated. A major advantage of integrated homes with power-to-heat coupling in comparison to standalone battery storages is the additional flexibility to absorb negative control reserve power in the heating sector. Seasonal variation of feed-in from photovoltaics is considered by an advanced strategy for variable provision of control reserve. Results show that a dual-use operation with participation in the control reserve market can increase the profitability of storage systems. Market participation leads to accelerated battery aging, mainly driven by increased calendar aging. This is overcompensated by the possible incomes. Under consideration of low costs for market participation, a constant provision of at least 3 kW of reserve power could be economical. A variable provision further enhances economic efficiency.
机译:拥有光伏电池存储系统的家庭数量在稳步增长,热泵装置的数量也在稳步增长。一体式住宅结合了家用电池系统和热泵,实现了电热耦合。在冬季,由于太阳辐射低,集成家庭中的存储系统无法充分利用。通过应用双重用途方案,可以利用这种潜力来提高经济效益。在此出版物中,研究了参与频率控制储备市场的集成房屋。与独立的电池存储相比,具有电热耦合功能的集成房屋的主要优势在于,它具有更大的灵活性,可以吸收供热部门的负控制备用功率。通过可变提供控制储备的先进策略,可以考虑光伏发电的季节性变化。结果表明,参与控制备用市场的双重使用操作可以提高存储系统的盈利能力。市场参与导致电池老化加速,这主要是由于日历老化加剧。这被可能的收入过度补偿。考虑到市场参与的低成本,恒定提供至少3 kW的备用功率可能是经济的。可变条款进一步提高了经济效率。

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