The world is moving leaps and bounds in terms of pollution-free traffic, and as a consequence, Electric Vehicles are making a scratch in a society which is to overcome the challenges associated with traditional charging systems that includes the low speed of charging, maintenance cost, etc. In this paper author introduces a foldable charger prototype or a model that can be installed by enhancing the performance with its fast, easier and durable charging. The electric vehicular industry aims toward developing zero pollution emissions as well as cost-effective with reasonable charging facilities and can use a model to illustrate the planning of charging piles shortly. This model will be optimizing multiport electric vehicle charger to facilitate fast charging for emergency vehicles by optimizing charging in all the ports. Apart from the fast charging, the lack of charging stations would be removed developing with less cost and lightweight such that it can be carried anywhere. The battery charge limitations are also maintained by using a motor within the car so that the power to be generated so that automatically the battery gets charged and ready for back-up case as well. A hardware model prototype of an electric vehicle is developed using a solar PV panel and bi-directional AC-to-DC converter and an impulse obtained by pulse width modulation to provide fast charging.

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Modeling of a Folded Smart Wireless Car Charger in a Solar Electric Vehicle (EV) Charging with an Automatic Recharge

  • Bishal Dasgupta,
  • Monalisa Datta

摘要

The world is moving leaps and bounds in terms of pollution-free traffic, and as a consequence, Electric Vehicles are making a scratch in a society which is to overcome the challenges associated with traditional charging systems that includes the low speed of charging, maintenance cost, etc. In this paper author introduces a foldable charger prototype or a model that can be installed by enhancing the performance with its fast, easier and durable charging. The electric vehicular industry aims toward developing zero pollution emissions as well as cost-effective with reasonable charging facilities and can use a model to illustrate the planning of charging piles shortly. This model will be optimizing multiport electric vehicle charger to facilitate fast charging for emergency vehicles by optimizing charging in all the ports. Apart from the fast charging, the lack of charging stations would be removed developing with less cost and lightweight such that it can be carried anywhere. The battery charge limitations are also maintained by using a motor within the car so that the power to be generated so that automatically the battery gets charged and ready for back-up case as well. A hardware model prototype of an electric vehicle is developed using a solar PV panel and bi-directional AC-to-DC converter and an impulse obtained by pulse width modulation to provide fast charging.