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Increased self-consumption and grid flexibility of PV and heat pump systems with thermal and electrical storage

机译:采用热电储存的PV和热泵系统的自耗量和电网灵活性增加

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The growing share of solar and wind energy sources requires increased efforts to ensure stability of the electrical grid and reliability of energy supply. Photovoltaic (PV) systems in combination with heat pumps (HP), local thermal (TES) and electrical energy storage offer the possibility to achieve higher PV self-consumption or services for stabilizing the electricity grid. Smart heat pump systems that are used in single family homes in combination with photovoltaics and local storages are tested with a hardware-in-the-loop approach on the test bench. Different system designs and control options are analyzed with system simulations (TRNSYS). The results are discussed with respect to the economical boundary conditions defined by the electricity market prices, in particular the difference between the purchase price and the feed-in tariff, with a focus on the current situation in Switzerland. The benefits of decreasing electricity purchase from the grid are compared with current prices of both electrical and thermal storages.
机译:太阳能和风能源的越来越多的份额需要增加努力,以确保电网的稳定性和能源供应的可靠性。光伏(PV)系统与热泵(HP)组合,局部热(TES)和电能存储提供了实现更高的PV自耗或用于稳定电网的服务的可能性。在单个家庭住宅中使用的智能热泵系统与光伏和本地存储器结合使用,在测试台上用硬件循环方法进行测试。使用系统模拟(TRNSYS)分析不同的系统设计和控制选项。结果讨论了由电力市场价格定义的经济边界条件讨论,特别是购买价格与饲料关税之间的差异,重点是瑞士目前的情况。将电网从电网购买降低的好处与电气和热存储器的当前价格进行了比较。

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