Assessing the Nationwide Benefits of Vehicle–Grid Integration during Distribution Network Planning and Power System Dispatching

IF 2.6 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC World Electric Vehicle Journal Pub Date : 2024-03-27 DOI:10.3390/wevj15040134
G. Rancilio, Alessia Cortazzi, G. Vigano, F. Bovera
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Abstract

The diffusion of electric vehicles is fundamental for transport sector decarbonization. However, a major concern about electric vehicles is their compatibility with power grids. Adopting a whole-power-system approach, this work presents a comprehensive analysis of the impacts and benefits of electric vehicles’ diffusion on a national power system, i.e., Italy. Demand and flexibility profiles are estimated with a detailed review of the literature on the topic, allowing us to put forward reliable charging profiles and the resulting flexibility, compatible with the Italian regulatory framework. Distribution network planning and power system dispatching are handled with dedicated models, while the uncertainty associated with EV charging behavior is managed with a Monte Carlo approach. The novelty of this study is considering a nationwide context, considering both transmission and distribution systems, and proposing a set of policies suitable for enabling flexibility provision. The results show that the power and energy demand created by the spread of EVs will have localized impacts on power and voltage limits of the distribution network, while the consequences for transmission grids and dispatching will be negligible. In 2030 scenarios, smart charging reduces grid elements’ violations (−23%, −100%), dispatching costs (−43%), and RES curtailment (−50%).
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在配电网络规划和电力系统调度过程中评估全国范围内的车网融合效益
电动汽车的普及对于交通部门的去碳化至关重要。然而,电动汽车的一个主要问题是与电网的兼容性。本研究采用全电力系统方法,全面分析了电动汽车的推广对意大利国家电力系统的影响和益处。通过对相关文献的详细审查,我们估算了需求和灵活性曲线,从而提出了可靠的充电曲线和由此产生的灵活性,并与意大利的监管框架相兼容。配电网络规划和电力系统调度采用专用模型进行处理,而与电动汽车充电行为相关的不确定性则采用蒙特卡罗方法进行管理。这项研究的新颖之处在于考虑了全国范围内的情况,同时考虑了输电和配电系统,并提出了一套适用于提供灵活性的政策。研究结果表明,电动汽车的普及带来的电力和能源需求将对配电网的功率和电压极限产生局部影响,而对输电网和调度的影响则微乎其微。在 2030 年的情景中,智能充电可减少电网元件违规(-23%、-100%)、调度成本(-43%)和可再生能源削减(-50%)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
World Electric Vehicle Journal
World Electric Vehicle Journal Engineering-Automotive Engineering
CiteScore
4.50
自引率
8.70%
发文量
196
审稿时长
8 weeks
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