一种线性规划方法量化具有V2G功能的插电式混合动力汽车对配电系统的影响

J. Gireldez, R. Roche, S. Suryanarayanan, D. Zimmerle
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引用次数: 10

摘要

智能电网计划(SGI)鼓励整合储能和调峰技术,包括插电式混合动力汽车(phev)。插电式混合动力汽车在美国的销量预计将大幅增长,主要是因为它们有可能通过减少化石燃料消耗和降低排放来降低燃料成本。然而,这些车辆普及率的提高可能会给公用事业带来问题,特别是如果管理不当,它们可能会大幅增加需求高峰。本文提出了一种方法来确定具有车辆到电网(V2G)能力的插电式混合动力车队对配电系统的影响。该方法依赖于一个概率插电式混合动力车队特征模型和一个线性规划算法来确定车队车辆的最佳充电模式,然后将其用于公用事业调峰目的。几个场景的结果表明,在不增加峰值负荷和不需要对所选测试系统的配电基础设施进行任何容量更新的情况下,支持v2g的插电式混合动力车的渗透率可以达到30%。详细的结果还表明,住宅用户的日负荷概况将被修改,并将比现在更接近其平均值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Linear Programming Methodology to Quantify the Impact of PHEVs with V2G Capabilities on Distribution Systems
The Smart Grid Initiative (SGI) encourages the integration of storage and peak-shaving technologies including plugin hybrid electric vehicles (PHEVs). PHEV sales in the US are expected to significantly increase primarily due to their potential to lower fuel costs by reducing fossil fuel consumption and to lower emissions. The rising penetration rate of these vehicles may however cause problems to utilities, especially as they may dramatically increase demand peaks if not managed properly. In this paper, a methodology is proposed to determine the impact of PHEV fleets with vehicle-to-grid (V2G) capabilities on electric distribution systems. The methodology relies on a probabilistic PHEV fleet characteristics model and a linear programming algorithm to determine the optimal charging patterns of the fleet vehicles, which are then used for utility peak-shaving purposes. Results for several scenarios show that a 30 % penetration level of V2G-capable PHEVs can be achieved without increasing peak load and without requiring any capacity update on the distribution infrastructure of the selected test system. Detailed results also show that daily load profiles would be modified for residential customers, and would stay closer to their average value than today.
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