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Impact of power-to-gas storage on the integration of photovoltaic electricity into the grid: A simulation approach with distribution grid data of Switzerland

机译:电能存储对光伏发电并入电网的影响:瑞士配电网数据的模拟方法

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Since renewable sources will significantly contribute to the electricity supply in the future, good mid- and long-term storage solutions need to enable a decoupling of the production and consumption of electricity in order to maintain the grid stability. Besides well-approved and established storage solutions like pumped hydro facilities, other relatively new ideas of storing electricity are emerging. An example is the chemical storage of electricity in the form of gas, also known as power-to-gas. This paper contributes to the field of electricity storage by showing how power-togas could be used in combination with the pumped hydro facilities in Switzerland to facilitate the integration of photovoltaic sources into the electricity grid. We follow a simulation approach in order to determine the impact of power-to-gas on the grid. In a first scenario, we simulate the supply of three regions without power-to-gas as a basic scenario. In scenarios two and three, we show how a limitation of the pumped hydro capacities and the use of power-to-gas changes the situation. Our simulation shows that power-to-gas units can be efficiently combined with pumped hydro stations; this combination leads to better facility utilization for both and a better integration of photovoltaic electricity.
机译:由于可再生能源将在未来为电力供应做出巨大贡献,因此良好的中长期存储解决方案需要使电力生产和电力消耗脱钩,以维持电网的稳定性。除了诸如水力发电设施之类的公认且成熟的存储解决方案之外,还出现了其他相对较新的存储电的想法。一个例子是以气体的形式化学存储电力,也称为从电力到天然气。本文通过展示如何将燃气与瑞士的抽水发电设施结合使用,以促进将光伏能源整合到电网中,为储电领域做出了贡献。我们采用一种模拟方法来确定燃气发电对电网的影响。在第一种情况下,我们将不使用燃气发电的三个区域的供应情况作为基本情况进行模拟。在方案二和方案三中,我们展示了抽水能力的限制以及电力到天然气的使用如何改变这种情况。我们的模拟表明,动力燃气装置可与抽水发电站有效结合;这种结合可以提高两者的设施利用率,并更好地整合光伏电力。

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