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Design and implementation of electric speed booster and kinetic energy recovery system for electric vehicle

机译:电动汽车电动助力器和动能回收系统的设计与实现

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Electric vehicle is one of the major technological innovations of this century which has already shown immense potential to change the course of human transportation system. This paper focuses mainly on the design and implementation of an electric speed booster which includes an ultra-capacitor bank, a regeneration system, a solar charging system and a traction system. In this paper, an ultra-capacitor bank is charged through both regeneration as well as the solar charging system to act as a surge power source for speed boosting. Necessary converters and rectifiers have been employed for conversion of the energy for charging the capacitor bank. The ultra-capacitor bank has been connected in conjunction with a battery bank, both of which are used to support the DC bus that electrically drives the drive train. A toggle switch is employed for initiating speed boost mechanism in the vehicle. The system operates such that the ultra-capacitor-battery combination works as a range extender when speed boost is switched off and as a speed booster when it is switched on. Such a system has shown to further improve the efficiency and performance of the system. Performance analysis is carried out and results are provided in the later section of this paper.
机译:电动汽车是本世纪的重大技术创新之一,已经显示出改变人类运输系统路线的巨大潜力。本文主要关注电动助力器的设计和实现,该电动助力器包括超级电容器组,再生系统,太阳能充电系统和牵引系统。在本文中,通过再生以及太阳能充电系统对超级电容器组进行充电,以充当用于提高速度的电涌电源。已经采用了必要的转换器和整流器来转换能量以对电容器组充电。超级电容器组已与电池组连接在一起,两者均用于支撑电驱动传动系统的DC总线。拨动开关用于启动车辆中的加速机构。该系统的运行方式是:超级电容器-电池组合在速度提升功能关闭时用作范围扩展器,而在其开启时用作速度提升器。这样的系统已经显示出可以进一步提高系统的效率和性能。执行性能分析,并在本文的后面部分提供结果。

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