电动汽车电池充电站设计

K. Kusum, Chetan Parveer
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引用次数: 0

摘要

随着交通运输对绿色技术的要求越来越高,电动汽车已被证明是减少温室气体排放的最佳短期解决方案。传统汽车司机仍然不愿意使用这种新技术,主要是因为使用现有的一级和二级充电站给电动汽车电池充电需要4-8小时的时间。因此,能够将充电时间缩短到10-15分钟的III级快速充电站正在设计和开发中。本论文的重点是电动汽车快速充电站的设计,除了电网外,还使用了两种固定式储能装置飞轮储能和超级电容器。设计了用于电源与充电站接口的电力电子变换器。设计开发还侧重于能量管理,将最大限度地减少电池充电时间。因此,需要一种利用其数学公式最小化持续时间的算法,并将说明其在快速充电中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of charging station for electric vehicle batteries
With the increasing requirement in green technologies in transportation, electric vehicles have proven to be the best short-term solution to reduce greenhouse gas emissions. The conventional vehicle drivers are still unwilling in using such a new technology, mainly because of the time duration (4-8 hours) required to charge the electric vehicle batteries with the currently existing Level I and II charging station. For this reason, Level III fast- charging stations capable of reducing the charging duration to 10-15 minutes are being designed and developed. The present thesis focuses on the design of a fast-charging station for electric vehicle, in addition to the electrical grid, two stationary energy storage devices flywheel energy storage and a super capacitor is being used. Power electronic converters used for the interface of the energy sources with the charging stations are designed. The design development also focuses on the energy management that will minimize the battery charging time. For this reason, an algorithm that minimizes durations with its mathematical formulation is required, and its application in fast charging will be illustrated.
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