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Added Value of Individual Flexibility Profiles of Electric Vehicle Users For Ancillary Services

机译:电动汽车用户用于辅助服务的个人灵活性档案的附加值

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Vehicle-Grid Integration (VGI) research may serve to limit the self-induced adverse effects of electric vehicles (EVs) in terms of additional grid loading, but also as to make the EV an active asset in supporting a stable, economic power system based on renewable energy. Any use of the vehicle for grid services requires an accurate understanding of the user's driving needs. This paper proposes the introduction of a user profile, describing the energy requirements for driving in terms of an energy deadline, target and minimum. To explore the use of such a profile, the paper analyses data from a Danish pilot project where the driving patterns of ten electric Nissan e-NV200 vans are investigated in terms of leave times and energy consumption. It is shown that the data can be fitted with a log-normal distribution that can be used to establish a per user profile which provides a certain statistical probability of fulfilling the driving needs while allowing an aggregator to optimize earnings. Initially, aggregators may apply similar driving assumptions across an entire fleet. Considering that the driving needs of individual EV owners are different, statistical representations of the individual behaviour may result in more flexibility, and thereby time, for providing grid services. The paper quantifies the value of such added flexibility based on the Danish market for frequency containment reserves.
机译:车辆-电网集成(VGI)研究可能会限制额外的电网负载,从而限制电动汽车(EV)的自生不利影响,同时也使EV成为支持基于稳定,经济动力系统的活跃资产关于可再生能源。车辆用于网格服务的任何使用都需要准确了解用户的驾驶需求。本文提议引入用户资料,从能源截止日期,目标和最低方面描述驾驶所需的能量。为了探索这种轮廓的使用,本文分析了丹麦一项试点项目的数据,该项目从离开时间和能耗方面研究了十辆日产e-NV200电动货车的驾驶方式。结果表明,数据可以拟合为对数正态分布,该分布可用于建立每个用户的配置文件,该配置文件提供满足驾驶需求的一定统计概率,同时允许聚合器优化收益。最初,聚合器可能会在整个车队中应用类似的驾驶假设。考虑到各个电动汽车所有者的驾驶需求是不同的,各个行为的统计表示可能会带来更大的灵活性,从而为提供网格服务带来更多的时间。本文根据丹麦的频率限制储备市场来量化这种增加的灵活性的价值。

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