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A Charger for AC to DC and DC to AC Conversion for Electric Vehicle

机译:电动汽车的AC到DC和DC到AC转换的充电器

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Technologies in the automotive sector is drastically changing day by day. The internal combustion engine which was the heart of the automobile industry for almost more than a century is now getting obsolete. As the world around is more concern towards the environment and thinking various methods by which the pollution can be reduced, the future of the internal combustion engine which is a major source of polluting the environment paints a grim picture. The alternative the mankind is looking for the internal combustion engine is the electric motor vehicles that are drastically hiking across the universe on account of immense environmental issues and energy shortage. Charging of electric vehicle is a crucial part and might thus become a burden to the current energy sources. In order to avoid such shortage of energy a new comprehensive design of a battery charger is introduced for electric vehicles. The proposed system can be operated in two modes that are exchange of energy from Grid to Vehicle and exchange of energy from Vehicle to Grid according to the user requirement. In this paper we propose a battery charger for the Electric Vehicle (EV) which is controllable and bidirectional in manner. TMS320f28335 DSP processor is used as a control unit. The main functions of the processor are controlling the phase, amplitude and frequency of the signal that is given to the grid and generates PWM signals for IGBT. It also checks whether the battery is having a particular threshold value or not and provides authorization while operating in Vehicle to Grid mode. The performance of the proposed system is evaluated on Matlab/Simulink and results are depicted in the simulated section.
机译:汽车行业的技术日新月异。内燃机已经成为汽车工业近一个多世纪的心脏,如今已经过时了。由于全世界越来越关注环境,并想出各种减少污染的方法,内燃机作为污染环境的主要根源,其前途堪忧。人类正在寻找内燃发动机的另一种选择是电动汽车,由于巨大的环境问题和能源短缺,电动汽车在整个宇宙中急剧行驶。电动汽车的充电是至关重要的部分,因此可能成为当前能源的负担。为了避免这种能量短缺,引入了用于电动车辆的电池充电器的新的综合设计。所提出的系统可以以两种模式操作,即根据用户需求从电网到车辆的能量交换和从车辆到电网的能量交换。在本文中,我们提出了一种用于电动汽车(EV)的电池充电器,该充电器可控且双向。 TMS320f28335 DSP处理器用作控制单元。处理器的主要功能是控制提供给电网的信号的相位,幅度和频率,并为IGBT生成PWM信号。它还会检查电池是否具有特定的阈值,并在“车辆到电网”模式下运行时提供授权。所提出系统的性能在Matlab / Simulink上进行了评估,结果在模拟部分进行了描述。

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