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The impact of location and type on the performance of low-voltage network connected battery energy storage systems

机译:位置和类型对低压联网电池储能系统性能的影响

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This paper assesses the impact of the location and configuration of Battery Energy Storage Systems (BESS) on Low-Voltage (LV) feeders. BESS are now being deployed on LV networks by Distribution Network Operators (DNOs) as an alternative to conventional reinforcement (e.g. upgrading cables and transformers) in response to increased electricity demand from new technologies such as electric vehicles. By storing energy during periods of low demand and then releasing that energy at times of high demand, the peak demand of a given LV substation on the grid can be reduced therefore mitigating or at least delaying the need for replacement and upgrade. However, existing research into this application of BESS tends to evaluate the aggregated impact of such systems at the substation level and does not systematically consider the impact of the location and configuration of BESS on the voltage profiles, losses and utilisation within a given feeder.
机译:本文评估了电池储能系统(BESS)的位置和配置对低压(LV)馈线的影响。 BESS现在正由配电网络运营商(DNO)部署在LV网络上,以替代常规加固(例如升级电缆和变压器),以响应电动汽车等新技术对电力的需求增加。通过在需求低时存储能量,然后在需求高时释放能量,可以降低电网上给定LV变电站的峰值需求,从而减轻或至少延迟了更换和升级的需求。但是,对BESS的这种应用的现有研究倾向于在变电站级评估此类系统的综合影响,而没有系统地考虑BESS的位置和配置对给定馈线内的电压分布,损耗和利用率的影响。

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