AN EVALUATION OF ELECTRIC VEHICLES AND MAJOR ISSUES ON WIRELESS POWER TRANSFER

  • Bhupesh Gahlot Student, Department of Electrical Engineering, Global Institute of Technology, Jaipur

Abstract

The perception of power transferred from source to load through wires from is popular from numerous years. Presently wireless power transfer (WPT) is the future of power technology. WPT has been reached too many advancements with newly industrialized methodologies of power transfer. WPT is being travelled day by day. This paper focuses on wireless power technology (WPT) in first part, literature review on second part, basic principle and modes of wireless power transfer like inductive power transfer (IPT), Capacitive power transfer, Resonant power transfer with challenges in later part.


How to cite this article:
Gahlot B, Shankar D, Sharma K et al. An Evaluation
of Electric Vehicles and Major Issues on Wireless
Power Transfer. J Adv Res Auto Tech Transp Sys
2020; 5(2): 1-

References

1. Kishore Naik Mude, Thesis on Wireless Power Transfer for Electric Vehicle, SCHOOL OF DOCTORAL RESEARCH IN: Industrial Engineering, Department of Industrial Engineering, University of Padova, Italy.
2. Shubhangi Das , Kajal Pal , Prerna Goswami , M.A.K. Kerawalla, Wireless Power Transfer in Electric Vehicles, International Journal of Applied Environmental Sciences ISSN 0973-6077 Volume 13, Number 7 (2018), pp. 643-659 © Research India Publications.
3. Muhammad Maqsood, M. Nauman Nasir, Wireless electricity (Power) transmission using solar based power satellite technology, Journal of Physics Conference Series 439(1):2046- · June 2013, DOI: 10.1088/1742-6596/439/1/012046
4. KHURRAM AFRIDI., Wireless Charging of Electric Vehicles, Frontiers of Engineering: Reports on Leading-Edge Engineering from the 2017 Symposium. National Academy of Engineering.
5. Washington (DC): National Academies Press (US); 2018 Jan 22.
6. CHUN QIU ; K.T. CHAU ; CHUNHUA LIU ; C.C. CHAN, OVERVIEW OF WIRELESS POWER TRANSFER FOR ELECTRIC VEHICLE CHARGING, 17-20 NOV. 2013
7. Publisher: IEEE, 2013 World Electric Vehicle Symposium and Exhibition (EVS27)
8. M. Bhadu, B. Rathor and S. K. Bishnoi, "Modern control techniques of AC microgrid," 2017 International Conference on Computing and Communication Technologies for Smart Nation (IC3TSN), Gurgaon, 2017, pp. 1-6.
9. M. Bhadu, V. S. Punia, S. K. Bishnoi and B. Rathor, "Robust noise mitigation control techniques for SMIB power system," 2017 International Conference on Computing and Communication Technologies for Smart Nation (IC3TSN), Gurgaon, 2017, pp. 7-12.
10. B. Rathor, M. Bhadu and S. K. Bishnoi, "Modern Controller Techniques of Improve Stability of AC Microgrid," 2018 5th International Conference on Signal Processing and Integrated Networks (SPIN), Noida, 2018, pp. 592-596.
11. J. Kumar, B. Rathor and P. Bahrani, "Fuzzy and P&O MPPT Techniques for Stabilized the Efficiency of Solar PV System," 2018 International Conference on Computing, Power and Communication Technologies (GUCON), Greater Noida, Uttar Pradesh, India, 2018, pp. 259-264.
12. V. Agrawal, B. Rathor, M. Bhadu and S. K. Bishnoi, "Discrete Time mode PSS Controller Techniques to Improve Stability of AC Microgrid," 2018 8th IEEE India International Conference on Power Electronics (IICPE), JAIPUR, India, 2018, pp. 1-5.
13. B. Rathor, N. Utreja, M. Bhadu and D. Sharma, "Role of Multi-Band Stabilizers on Grid Connected Microgrid," 2018 2nd International Conference on Micro-Electronics and Telecommunication Engineering (ICMETE), Ghaziabad, India, 2018, pp. 318-322.
14. Jin H. and Rim C. T., "KAIST wireless electric vehicles - OLEV," SAE International, Vol. 1, pp. 1-10, 2011 .
15. Wu H. H., Gilchrist A., Sealy K., Israelsen P. and Muhs J., "A review on inductive charging for electric vehicles," in Electric Machines & Drives Conference (IEMDC), 2011 IEEE International, 2011, pp. 143-147.
16. Miller J. M., Scudiere M. B., McKeever J. W., and White C., "Wireless power transfer," in Oak Ridge National Laboratory's Power Electronics Symposium, 2011.
17. Covic G., Boys J. T., "Modern Trends in Inductive Power Transfer for Transportation Applications", IEEE Selected Topics in Power Electronics, Vol. 1, No. 1, March 2013.
18. Garnier L., Chatroux D., '' Understanding the unbalancing of a battery pack to choose the best balancing solution'', PCIM 13, 14-16 May 2013, Nurnberg, Germany, ISBN 978-3-8007-3505-1
19. Chopra S., Bauer P.,"Analysis and design considerations for a contactless power transfer system", Telecommunications Energy Conference (INTELEC), 2011 IEEE, Oct. 2011. Kamath H., "Program on Technology Innovation: Impact of Wireless Power Transfer Technology", Electric Power Research Institute (EPRI), California, 2009.
20. Innovative fast inductive charging solution for electric vehicle”, part of 7th Framework Program of EU, www.fastincharge.eu .
21. On-road charging of electric vehicles”- The fabric project, part of 7th Framework Program of EU, http://www.fabric-project.eu/ .
22. Covic G., Boys John T., Budhia M., Huang C., "Electric Vehicles – Personal transportation for the future", World Electric Vehicle Journal Vol. 4, Shenzhen, China, Nov 5-9, 2010 .
23. OLEV Technologies /On Line Electric Vehicles/, http://olevtech.com .
24. Conductix Wampfler, www.ipt-technology.com .
25. ICNIRP – International Commission on Non – Ionizing Radiation Protection, EMF Guidelines 1998, 1999, 2001, 2008, 2009, 2010, 2014, www.icnirp.org/en/publication.
26. Bombardier, http://primove.bombardier.com .
27. UNPLUGGED project, http://unplugged-project.eu/ .
Published
2020-05-25
How to Cite
GAHLOT, Bhupesh. AN EVALUATION OF ELECTRIC VEHICLES AND MAJOR ISSUES ON WIRELESS POWER TRANSFER. Journal of Advanced Research in Automotive Technology and Transportation System, [S.l.], v. 4, n. 1, p. 1-4, may 2020. Available at: <http://thejournalshouse.com/index.php/automotive-transport-tech-engg/article/view/418>. Date accessed: 11 apr. 2025.