智能电网和智能家居场景下电动汽车运行的新机遇和前景

V. Monteiro, J. Ferreira, J. G. Pinto, J. Afonso
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引用次数: 1

摘要

提出了智能电网和智能家居环境下电动汽车运行的新前景。目前,插电式电动汽车配备车载电池充电器,只是为了完成从电网(G2V -电网到车辆模式)的充电过程。虽然这是此类电池充电器的主要目标,保持主要硬件结构和改变数字控制算法,但车载电池充电器也可以用于执行额外的操作模式。这种运行模式与电池将能量返回电网(v2v - vehicle-to-grid mode)、电动汽车所插电的电力装置的约束(iG2V -改进的电网对车辆模式)、可再生能源的接口以及对改善电力装置电能质量的贡献有关。除了电动汽车有助于减少与交通部门相关的石油消耗和温室气体排放外,通过这些额外的运行模式,电动汽车还代表了对智能电网和智能家居范例的重要贡献。通过上述接口和操作方式介绍了EV的实验结果。使用了连接到电网的车载电动汽车电池充电器原型,最大功率为3.6 kW。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New Opportunities and Perspectives for the Electric Vehicle Operation in Smart Grids and Smart Homes Scenarios
New perspectives for the electric vehicle (EV) operation in smart grids and smart homes context are presented. Nowadays, plugged-in EVs are equipped with on-board battery chargers just to perform the charging process from the electrical power grid (G2V – grid-to-vehicle mode). Although this is the main goal of such battery chargers, maintaining the main hardware structure and changing the digital control algorithm, the on-board battery chargers can also be used to perform additional operation modes. Such operation modes are related with returning energy from the batteries to the power grid (V2Gvehicle-to-grid mode), constraints of the electrical installation where the EV is plugged-in (iG2V – improved grid-tovehicle mode), interface of renewables, and contributions to improve the power quality in the electrical installation. Besides the contributions of the EV to reduce oil consumption and greenhouse gas emissions associated to the transportation sector, through these additional operation modes, the EV also represents an important contribution for the smart grids and smart homes paradigms. Experimental results introducing the EV through the aforementioned interfaces and operation modes are presented. An on-board EV battery charger prototype was used connected to the power grid for a maximum power of 3.6 kW.
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