V2G实施的概念框架设计

C. Guille, C. Guille, George Gross
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引用次数: 109

摘要

油价的大幅上涨和对环境的日益关注是电动汽车和插电式混合动力汽车日益普及的关键驱动因素。汽车制造商非常了解这一趋势,正在开发新车型。对于90%每天开车上班的美国人来说,平均每天通勤距离为45公里,汽车平均每天停放时间为22小时。这些车辆的一个显著特征是电池,它们提供了良好的存储容量,可以有效地集成到电网中。我们专注于设计一个概念框架,需要将电动汽车整合到电网中,即所谓的V2G概念。我们使用的基本前提是将电池汽车视为分布式能源,既可以作为供应资源,也可以作为需求资源。我们评估了电池组车辆的部署,以提供需要非常快的响应时间和调峰能源供应的频率调节。我们还研究了电池车辆充电负荷对低负荷发电计划和监管要求的影响。对这些影响的评估考虑了不确定性的明确表示和充电状态作为电池使用中供需角色的关键变量的重要性。为了框架的完整性,我们还探讨了能源服务提供商在V2G集成中的作用。
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Design of a Conceptual Framework for the V2G Implementation
The major increases in oil prices and the rising environmental concerns are key drivers in the growing popularity of electric and plug-in hybrid vehicles. Car manufacturers understand this trend quite well and are developing new models. For the 90% of Americans who use their cars to get to work every day, the average daily commute distance is 45 km and the average daily time that cars remain parked is 22 hours. A salient feature that these vehicles have in common is the batteries, which provide good storage capacity that can be effectively integrated into the grid. We focus on the design of a conceptual framework needs to integrate the electric vehicles into the grid the so-called V2G concept. The basic premise we use is to treat the battery vehicles as distributed energy resources that can act both as supply and demand resources. We assess the deployment of an aggregation of battery vehicles for the provision of frequency regulation requiring very fast response times and energy supply for peak shaving. We also investigate the impacts of the aggregated battery vehicle charging load on the low load generation schedules and on regulation requirements. The assessment of these impacts takes into consideration the explicit representation of uncertainty and the importance of the state of charge as a key variable in the use of the batteries for the supply and demand roles. For the framework completeness, we also explore the role of the energy services provider in the V2G integration.
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