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An overview of electricity powered vehicles: Lithium-ion battery energy storage density and energy conversion efficiency

机译:电力车辆概述:锂离子电池储能密度和能量转换效率

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Electricity powered vehicles/Electric vehicles using renewable energy are becoming more and more popular, since they have become an effective way to solve energy shortage, and environmental pollution. Battery electric vehicles with zero emission characteristics are being developed on a large scale. With the scale of electric vehicles, electric vehicles with controllable load and vehicle-to-grid functions can optimize the use of renewable energy in the grid. This puts forward the higher request to the battery performance. The energy density of the batteries and renewable energy conversion efficiency have greatly also affected the application of electric vehicles. This paper presents an overview of the research for improving lithium-ion battery energy storage density, safety, and renewable energy conversion efficiency. It is discussed that is the application of the integration technology, new power semiconductors and multi-speed transmissions in improving the electromechanical energy conversion efficiency, and the issues and challenges of increasing battery energy density. In order to improve the safety, it is analyzed how to improve the estimation accuracy and temperature control performance of the battery management system. As the demand for fast charging and renewable energy of electric vehicles increases, the latest developments and technical challenges of on-board rapid charging technology are introduced. (C) 2020 Elsevier Ltd. All rights reserved.
机译:电力动力车辆/电动汽车使用可再生能源越来越受欢迎,因为它们已成为解决能源短缺和环境污染的有效途径。具有零排放特性的电池电动车辆正在大规模开发。利用电动车辆的规模,具有可控负载和车辆到网格函数的电动车辆可以优化在网格中使用可再生能量的使用。这提出了更高的电池性能请求。电池的能量密度和可再生能源转换效率极大地影响了电动车辆的应用。本文概述了提高锂离子电池储能密度,安全性和可再生能源转换效率的研究。讨论了,这是集成技术,新功率半导体和多速传输在提高机电能量转换效率方面的应用,以及增加电池能量密度的问题和挑战。为了提高安全性,分析了如何提高电池管理系统的估计精度和温度控制性能。随着电动汽车快速充电和可再生能源的需求,介绍了板载快速充电技术的最新发展和技术挑战。 (c)2020 elestvier有限公司保留所有权利。

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