Hybrid energy storage system containing Bidirectional DC Convertor, Battery, Super capacitor, Solar Panel for increasing the performance of Electric Vehicles

Mohd Shadman, V. S. Raj, R. Dave, Ankit Pal
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引用次数: 6

Abstract

This paper gives information about a Electric Vehicle (EV) which is most reliable with extended range power source. The main energy source consists of solar PV, a battery and Ultra capacitor (UC). Battery acts as a main energy source to the system which is connected with the Ultra capacitor and acts as a source of energy during the transient phase, for example during starting and braking of motor. Solar PV cell works during the steady-this arrangement is improved travel range, reduction in the size of battery with improved battery life and fast response during the transient. When there is irregular solar irradiation, there is the deficiency of power source, so the system requires a energy storing device. Usually Valve Regulated Lead Acid (VRLA) batteries are used for this kind of application. But to provide a large demand of current during the motor startup, it degrades battery plates which in return degrades the battery. The other method of providing large demand of current is to add VRLA batteries and super capacitors, to build a new hybrid storage system. In this hybrid system the battery will act as a continuous source of energy and the ultra capacitor will provide instant power. This paper is going to summarize the various other method of improving the efficiency of Electrical vehicles.
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混合储能系统包含双向直流变换器,电池,超级电容器,太阳能电池板,以提高电动汽车的性能
本文给出了一种最可靠的增程电源电动汽车(EV)。主要能源由太阳能光伏、电池和超级电容器(UC)组成。电池作为系统的主要能量来源,与超级电容器连接,在瞬态阶段,例如在电机启动和制动期间,作为能量来源。太阳能光伏电池在稳定状态下工作,这种安排提高了行程范围,减小了电池尺寸,提高了电池寿命,并在瞬态响应速度快。当太阳照射不规律时,电源不足,因此系统需要一个储能装置。通常阀控铅酸(VRLA)电池用于这种应用。但是,为了在电动机启动时提供大量的电流需求,它会使电池极板退化,从而使电池退化。另一种提供大电流需求的方法是增加VRLA电池和超级电容器,构建新的混合存储系统。在这个混合系统中,电池将作为一个持续的能源,而超级电容器将提供即时电力。本文将总结各种其他提高电动汽车效率的方法。
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