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Common battery storage for an area with residential houses

机译:带住宅房屋的区域的常见电池储存

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In this publication the technical benefits of a mutual battery storage compared to a solution with three individual battery storages is investigated. This has been done in the context of the EU funded project "GrowSmarter" in collaboration with Rheinenergie in the living area Stegerwaldsiedlung in Cologne. In the project area each of the three buildings has its own battery storage (size varies by building). This publication investigates the options for 3 buildings connected by a private residential grid instead of a public grid, with a central battery storage and the chance of energy self-consumption. This part consists of 3 houses with 167 apartments arranged around a common yard. The roofs are covered with photovoltaic modules with an installed power of 202,5 kWp. For this area Li-Ion batteries are installed in separate containers. They have a combined capacity of 200 kWh (130, 60 and 10 kWh) with varying maximum power (30, 20 and 5 kW). It is primarily used to optimize the use of the PV power. As a result, the grade of autarky can be improved from 41% to 45% by use of a common battery storage.
机译:在本出版物中,研究了与具有三个单独电池储存的解决方案相比的互电池储存的技术益处。这在欧盟资助项目“Growsmarter”的背景下,与古龙水的生活区Stegerwaldsiedlung的Rheinenergie合作。在项目区域中,三栋建筑中的每一个都有自己的电池存储(大小通过建筑物变化)。本出版物调查了私人住宅网格连接的3个建筑物的选项,而不是公共网格,中央电池存储和能量自费的机会。这部分由3个房屋组成,配有167公寓,围绕公园。屋顶覆盖有光伏模块,安装功率为202.5 kWp。对于该区域,锂离子电池安装在单独的容器中。它们的合计容量为200千瓦时(130,60和10千瓦时),最大功率(30,20和5 kW)变化。它主要用于优化PV功率的使用。因此,通过使用普通电池存储,可以从41%到45%提高自动化等级。

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