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Efficient System Integration of Wind Generation through Smart Charging of Electric Vehicles

机译:通过电动汽车智能充电的风力发电高效系统集成

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Electrification of road transport is becoming increasingly important in the context of reaching the objective to reduce carbon emissions, particularly when combined with the increased share of renewable and other low-carbon electricity generation. However, the efficient integration of renewable generation and electrified transport might be put at risk unless the flexibility of electric vehicles (EVs) is not utilised to support system operation. This paper therefore develops an analytical approach for including flexible EV load into power system scheduling while taking into consideration detailed driving patterns of a nationally representative EV fleet. This approach enables the quantification of the impact of different EV charging strategies(smart vs. non-smart) on the economic and environmental performance of the system, and in particular on the ability of the system to integrate intermittent renewable output. The approach is demonstrated on a case study for the GB system in 2030, suggesting massive cost and: emission savings resulting from smart EV charging, as well as dramatic improvements in terms of reduced curtailment of intermittent wind output.
机译:在达到目标降低碳排放的目的的背景下,公路运输的电气变得越来越重要,特别是当结合可再生和其他低碳发电的份额增加时。然而,除非没有利用电动车辆(EVS)的灵活性来支持系统操作,否则可再生生成和电气化运输的有效整合可能会出现风险。因此,本文开发了一种分析方法,包括柔性EV负载到电力系统调度,同时考虑到国家代表EV舰队的详细驾驶模式。这种方法使得能够量化不同EV充电策略(智能与非智能)对系统的经济和环境绩效的影响,特别是系统集成间歇可再生产出的能力。该方法是在2030年为GB系统进行的案例研究证明,提出了大量成本和:智能EV充电导致的排放节约,以及减少间歇风输出的削减减少的戏剧性改进。

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