Wireless Power Transfer For Application of Electrical Vehicle

Abhishek Kumar, Avinash Gond, Anurag Dwivedi, Nitesh Tiwari: Wireless Power Transfer For Application of Electrical Vehicle. In: International Transaction on Engineering & Science, 1 (3), pp. 11-15, 2019.

Abstract

This review paper present the Wireless Power Transfer (WPT) for charging of electric vehicles. Its technique is also known as inductive power transfer (IPT). According to this technology the man free from more complex wire and joint. This technique is very attractive for Electric Vehicle (EVs). In the system the eddy current loss is minimum so this charging system is more efficient and EVs is eco-friendly for our environment and it does not produce any type of harmful effect. The EVs technique is very less noise as compared to the internal combustion engine. In this system design the inductive coil according to the scientific theory.

BibTeX (Download)

@article{ITG_475,
title = {Wireless Power Transfer For Application of Electrical Vehicle},
author = {Abhishek Kumar, Avinash Gond, Anurag Dwivedi, Nitesh Tiwari},
url = {https://www.itgjournal.com/wp-content/uploads/2019/04/ITG_475.pdf},
year  = {2019},
date = {2019-02-26},
journal = {International Transaction on Engineering & Science},
volume = {1},
number = {3},
pages = {11-15},
abstract = {This review paper present the Wireless Power Transfer (WPT) for charging of electric vehicles. Its technique is also known as inductive power transfer (IPT). According to this technology the man free from more complex wire and joint. This technique is very attractive for Electric Vehicle (EVs). In the system the eddy current loss is minimum so this charging system is more efficient and EVs is eco-friendly for our environment and it does not produce any type of harmful effect. The EVs technique is very less noise as compared to the internal combustion engine. In this system design the inductive coil according to the scientific theory.},
keywords = {ITES, Volume 1 Issue 3},
pubstate = {published},
tppubtype = {article}
}

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