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Grid compatible flexibility management with a Quota-based aggregator of electric vehicles using a split charging approach in residential grids

机译:使用基于配额的电动汽车聚合器在住宅网格中使用兼容的网格管理器进行网格兼容的灵活性管理

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This paper addresses the issue of high coincidence factors during electric vehicle (EV) charging cycles and the impact of flexibility aggregators. Based on findings for grid planning principles for EVs, an approach was explored to reduce grid loads caused by charging currents through the reduction of the probability of simultaneous charging cycles. Through the implementation of a split charging routine, which limited the first residential charge to a maximum state of charge, the corresponding reduction in charging duration translated into a reduced coincidence factor. Furthermore, the remaining charging capacity was made accessible as a flexible load for an aggregator. In order to prevent price-triggered high coincidences, these aggregators were integrated into the German "Grid Traffic Light" concept to allow for optimal load distribution. Here, based on the Quota System developed by the Netze BW, it was shown, that both markets and grid operators benefited from this approach.
机译:本文讨论了电动汽车(EV)充电周期中高重合因素的问题以及柔性聚合器的影响。基于对电动汽车的电网规划原则的发现,探索了一种方法,该方法可通过降低同时充电周期的概率来降低由充电电流引起的电网负荷。通过实施分割充电程序,该程序将首次住宅充电限制在最大充电状态,充电持续时间的相应减少转化为减少的重合因数。此外,剩余的充电容量可以作为聚合器的灵活负载使用。为了防止价格引发的高巧合,这些聚合器被集成到德国的“ Grid Traffic Light”概念中,以实现最佳的负载分配。在此,基于Netze BW开发的配额系统,结果表明,市场和电网运营商都从该方法中受益。

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