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Analysis of the impact of battery electric vehicles on the low voltage network of a Caribbean island

机译:电池电动车辆对加勒比岛低压网络的影响分析

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The adoption of electric vehicles (EVs) as an alternative form of transportation over internal combustion engine (ICE) driven vehicles introduces unprecedented challenges to the electrical distribution network due to the increased demand on the power system. This study provides the foundation for successful grid-connected EV deployment. The impact of the battery EVs (BEVs) on the electrical distribution network in the Caribbean island of Trinidad was analyzed using a developed residential feeder model based on actual data from the local electric utility. The worst case loading scenarios for increasing AC Level 2 EV charging penetration levels were analyzed in 5 percent increments from 0 to 20 percent with and without voltage regulation along the feeder. The critical penetration level was determined as 5 percent, without taking into consideration the inevitable overloading of existing pole-mounted transformers. At this level, less than 5 percent of the system busses suffered low voltage issues. Above this threshold, significant improvements to the grid would be required. DC charging is not feasible with present grid infrastructure but was also analyzed so as to understand its effects.
机译:通过电动车(EVS)作为内燃机(ICE)驱动车辆的替代形式的运输形式,由于电力系统的需求增加,对电配电网络引起了前所未有的挑战。本研究为成功的网格连接的EV部署提供了基础。使用基于来自局部电效用的实际数据,通过开发的住宅馈线模型分析了电池EVS(BEV)对Caribbean岛中的电气分配网络的影响。用于增加AC级2 EV充电渗透水平的最坏情况加载方案以5%的增量分析为0%至20%,并且沿馈线的电压调节。临界渗透水平确定为5%,而无需考虑现有杆式变压器的必然过载。在此级别,少于5%的系统总线遭受了低电压问题。高于此阈值,需要对网格的显着改进。 DC充电与目前的网格基础设施不可行,但也分析以便了解其效果。

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