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Novel grid-connected solar/wind powered electric vehicle charging station with vehicle-to-grid technology

机译:采用车对网技术的新型并网太阳能/风能电动汽车充电站

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In this paper, a novel grid-connected solar/wind powered electric vehicle charging station with vehicle to-grid technology is designed and constructed. The solar/wind powered electric vehicle charging station consists of a photovoltaic array, a wind energy conversion system, two unidirectional (Direct Current)/(Direct Current) converters connected to the photovoltaic array and wind energy conversion system, a unified maximum power point tracking controller, 15 bidirectional (Direct Current)/(Direct Current) converters associated with the 15 charging stations provided for charging electric vehicles, and a three-phase bidirectional (Direct Current)/(Alternating Current) inverter connected to the grid. The contribution of this work is that the grid-connected solar/wind powered electric vehicle charging station presented in this work is the only large-scale constructed charging station reported in the literature that combines two renewable resources (solar and wind) together to produce electric power to charge electric vehicles, and moreover, it maximally converts solar and wind energy into electric energy because it uses a novel fast and highly accurate unified maximum power point tracking technique that concurrently tracks the maximum power points of both photovoltaic array and wind energy conversion system. It is demonstrated that the constructed charging station not only provides electric energy to charge electric vehicles but also balances load demand in the grid connected to it. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文设计并构建了一种新型的并网太阳能/风能电动汽车充电站。太阳能/风能电动汽车充电站包括光伏阵列,风能转换系统,连接到光伏阵列的两个单向(直流)/(直流)转换器和风能转换系统,统一的最大功率点跟踪控制器,与为电动汽车充电的15个充电站相关的15个双向(直流)/(直流)转换器,以及连接到电网的三相双向(直流)/(交流)逆变器。这项工作的贡献在于,这项工作中介绍的并网太阳能/风能电动汽车充电站是文献中报道的唯一将两种可再生资源(太阳能和风能)结合在一起产生电力的大型建筑充电站它可以为电动汽车充电,并且可以最大程度地将太阳能和风能转换为电能,因为它使用了一种新颖且快速且高度准确的统一最大功率点跟踪技术,该技术可以同时跟踪光伏阵列和风能转换系统的最大功率点。事实证明,建成的充电站不仅为电动汽车提供电能,而且可以平衡与其相连的电网中的负荷需求。 (C)2017 Elsevier Ltd.保留所有权利。

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