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A Study of Vehicle-to-Vehicle Power Transfer Operation in V2G-Equipped Microgrid

机译:配备V2G的微电网中的车辆到车辆的动力传递操作研究

摘要

Bidirectional vehicle-to-grid (V2G) system utilizes the batteries of parked electric-drive-vehicles to provide energy storage and backup services in a power system. Such services in a V2G-equipped microgrid system can be used as an enabler of enhancing the renewable energy source (RES) penetration by storing the energy during the surplus of RES supply and supplying the energy during the lack of RES supply. In this research, we aim at enhancing the storage capacity of V2G system by introducing a novel vehicle-to-vehicle power transfer operation that runs on the top of V2G services. The vehicle-to-vehicle (V2V) operation transfers the energy from the source vehicles (which are parked for relatively longer times) to the destination vehicles (which are parked for relatively shorter times). The depleted energy of the source vehicles is fulfilled by the surplus RES supply in the future. In this way, the destination vehicles are effectively charged by RES supply, thereby enhancing the storage capacity of the V2G system. We can also say that the V2V operation would become beneficial only when there is a sufficient amount of surplus RES supply in the future. We propose a decision rule to distinguish if a vehicle should be a source vehicle or a destination vehicle during the V2V operation. The decision rule is designed based on the two factors, namely the state-of-charge of vehicle’s battery, and the remaining time of vehicle to depart. In this research, we conduct a comprehensive study to analyze the impacts of state-of-charge and mobility pattern of vehicles on different performance metrics via simulation. The results shows that in order to achieve better performance of V2V operation, the state-of-charge of vehicle’s battery should be given more priority over the remaining time of vehicle to depart. The vehicle mobility pattern with unexpected departure greatly reduced the overall performance of the V2G system.
机译:双向车辆到电网(V2G)系统利用停放的电动汽车电池为动力系统提供能量存储和备用服务。配备V2G的微电网系统中的此类服务可以通过在RES供应过剩期间存储能量并在RES供应不足时提供能量来增强可再生能源(RES)的渗透。在这项研究中,我们旨在通过引入一种在V2G服务之上运行的新颖的车载动力传输操作来增强V2G系统的存储容量。车辆到车辆(V2V)的运行将能量从源车辆(停放了相对较长的时间)转移到目的地车辆(停放了相对较短的时间)。将来,多余的RES供应将满足源车消耗的能源。这样,目的车辆可以通过RES供应有效充电,从而增强了V2G系统的存储容量。我们也可以说,只有当将来有足够的剩余RES供应时,V2V操作才会变得有益。我们提出了一个决策规则,以区分在V2V操作期间车辆是源车辆还是目的地车辆。决策规则是基于两个因素设计的,即车辆电池的充电状态和车辆的剩余离开时间。在这项研究中,我们进行了全面的研究,以通过仿真分析车辆的充电状态和出行方式对不同性能指标的影响。结果表明,为了获得更好的V2V操作性能,应该在剩余的车辆离开时间上为车辆的电池充电状态赋予更高的优先级。出人意料地偏离的车辆机动性大大降低了V2G系统的整体性能。

著录项

  • 作者

    Tamang Amit Kumar;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 en
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