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Electric vehicle development in China: A charging behavior and power sector supply balance analysis

机译:中国电动汽车发展:充电行为和电力部门供应平衡分析

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Possession of motor vehicles in China has been rising fast, along with continuous economic growth, social development and improvements in living standards, causing severe energy and environmental stress. To relieve the stress, China is promoting electric vehicles as good alternatives to conventional vehicles. By 2020, the accumulated production and sales of electric vehicles are expected to reach five million. Large-scale connection of electric vehicles to the power grid would inevitably bring challenges to the power sector. In this paper, an electric vehicle and multi-region load-dispatch grid-structure-based (EVMLG) mathematical model is presented, aiming to investigate the interaction between electric vehicles and the power sector. Impacts of charging behaviors are carefully considered. Through case studies, we conclude that (1) the development of electric vehicles will influence regional generation portfolio and operation pattern of the power sector, and increase the utilization of renewables, (2) guided charging can adapt to the power sector, and lead to better economic and environmental benefits, (3) electric vehicles are suitable to be deployed in resource-rich regions, and (4) the development potential of electric vehicles in China is huge from the viewpoint of power supply capacity. (C) 2017 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:拥有中国的汽车车辆一直在迅速上升,以及持续的经济增长,社会发展和生活水平的改善,造成严重的能源和环境压力。为了缓解压力,中国正在推广电动车作为传统车辆的良好替代品。到2020年,预计电动汽车的积累生产和销售额将达到500万。电动车辆的大规模连接到电网将不可避免地为电力部门带来挑战。在本文中,提出了一种电动车辆和多区域负载分派网格结构的(EVMLG)数学模型,旨在研究电动车辆与电力扇区之间的相互作用。仔细考虑充电行为的影响。通过案例研究,我们得出结论(1)电动汽车的发展将影响电力部门的区域一代组合和运营模式,并增加可再生能源的利用,(2)引导充电可以适应电力部门,并导致更好的经济和环境效益,(3)电动汽车适合在资源丰富地区部署,(4)中国电动汽车的发展潜力从供电能力的观点来看。 (c)2017年化学工程师机构。 elsevier b.v出版。保留所有权利。

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