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Techno-Economic Case Study of Micro-Grid System at Soccer Club of Skagerak Arena Norway

机译:挪威Skagerak竞技场足球俱乐部微电网系统的技术经济案例研究

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The photovoltaic system and battery energy storage can be used in a microgrid system for reducing peak demand from the grid and it enhances overall techno-economic performance of the system. In this work, a functioning micro-grid of 800 kWp photovoltaic system and 1 MWh lithium ion battery, located at Soccer Club of Skagrek Arena (Norway), is used for techno-economic analysis and operational load from years 2015 to 2018. The system performance has been analyzed for understanding the techno-economic operation, and contributions from the PV and battery energy storage for reducing peak demand from the grid. In this study, it has been observed that the integration of PV and battery energy storage can reduce the peak demand by 33%, whereas the micro-grid system electricity cost and net present cost have increased by 28% and 39% respectively compare to grid tied supply system. To reduce grid peak demand, the battery energy throughput has been following the same pattern as saving from grid supply. It has been noticed that the energy saving during summertime is nearly two times more as compare to wintertime. Results from this work are going to contribute for developing an institutional micro-grid facility considering demand side management and grid constraints.
机译:光伏系统和电池储能器可用于微电网系统中,以减少电网的峰值需求,并提高系统的整体技术经济性能。在这项工作中,位于挪威斯卡格里克竞技场足球俱乐部的800 kWp光伏系统和1 MWh锂离子电池的运行正常微电网用于技术经济分析和2015年至2018年的运营负荷。该系统对性能进行了分析,以了解技术经济运行情况,并从光伏和电池储能中做出了贡献,以减少电网的峰值需求。在这项研究中,已经观察到光伏和电池储能的集成可以使峰值需求减少33%,而微电网系统的电力成本和净现值成本分别比电网增加了28%和39%。捆绑供应系统。为了减少电网峰值需求,电池能量的吞吐量一直遵循与电网供电节省相同的模式。已经注意到,夏季的节能量是冬季的近两倍。这项工作的结果将有助于开发考虑到需求方管理和电网约束的机构微电网设施。

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