配电网中电动汽车集成的障碍与解决方案

Simone Striani, Kristian Sevdari, Lisa Calearo, P. B. Andersen, M. Marinelli
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引用次数: 4

摘要

随着电动汽车的大规模普及,由于同步充电因素造成的峰值负荷增加,可能会引发电网稳定性问题。智能充电是对电动汽车充电负荷的控制,长期以来一直被认为是一种潜在的解决方案。智能充电还可以减轻可再生能源发电的间歇性,从而有助于电网的稳定。本文介绍了配电层电动汽车柔性服务的现状。分析了智能充电的技术、经济和监管框架,并提出了这些方面的不同障碍。此外,本文还介绍了自主控制分布式充电器(autonomous Controlled Distributed Charger, ACDC)项目,该项目旨在开发一种基于分布式智能充电控制逻辑的电动汽车聚类方法,以实现灵活性服务。出于泄露的目的,本文描述了丹麦技术大学停车场的预定测试用例场景。本文总结了一些最相关的行动,以克服最紧迫的障碍,并进一步推动电动汽车充电基础设施的推广,实现政策制定者计划的电动汽车普及目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Barriers and Solutions for EVs Integration in the Distribution Grid
The mass penetration of electric vehicles (EVs) could develop grid stability problems due to the increase of peak loads created by coincident charging factors. Smart charging is the control of the EV charging loads and has long been identified as a potential solution. Smart charging could also contribute to grid stability by mitigating the intermittent nature of renewable energy generation. This paper describes the current status of EV flexibility services at the distribution level. The analysis of the smart charging status is done considering the technological, economic and regulatory frameworks, and presenting what the different barriers of each of these aspects are. Additionally, the paper introduces the ACDC project (Autonomously Controlled Distributed Charger), which aims at developing an EV clustering method based on distributed smart charging control logic for flexibility services. For divulgation purposes, the scheduled test case scenario of the parking lot at the Technical University of Denmark is described. The paper concludes on some of the most relevant actions to overcome the most imminent barriers and to push further the roll-out of EV charging infrastructure towards the target EV penetration planned by policymakers.
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