DocumentCode :
2996792
Title :
Wireless power transfer for small scale application
Author :
Lakshmanan, Ravi ; Kok Hoe Keat ; Sinnadurai, Rajendran
Author_Institution :
Dept. of Electr. & Electron. Eng., Asia Pacific Univ. of Technol. & Innovation, Bukit Jalil, Malaysia
fYear :
2013
fDate :
16-17 Dec. 2013
Firstpage :
31
Lastpage :
36
Abstract :
The password security wireless power transfer system is the integration of password security into wireless electrical power design which has a separate power design from source to load controlled by password controller. The revolution for wireless power and communications has arrived with wireless technologies widely integrated into wide range of products, provides new levels of convenience, interaction and monitoring. Consumer behaviours and demands have shifted for better reliability, convenience and innovative products. The research idea is innovative and no familiar design application and products are developed within designated electrical area. The research aims to design and develop a small scale wireless power transfer system via resonance inductive coupling wireless power technique to transmit power through high resonant frequency. A robust password security system is designed and developed using Arduino Deumilanove microcontroller, which adopts knowledge-based authentication technique to control the wireless power system. Full system analysis and experimental tests were conducted and it recorded 60% efficiency across transmitting distance of 50mm and the best transmitting and receiving antenna position are identified with range of 1 cm to 2 cm offset for antenna intersection for maximum efficiency. The research serves a good platform for electrical power design in security system and could be improvised further with advance system development, which can be commercialized to the public.
Keywords :
authorisation; coupled circuits; inductive power transmission; load regulation; microcontrollers; power engineering computing; power system measurement; power system security; power transmission reliability; radiofrequency power transmission; receiving antennas; transmitting antennas; Arduino Deumilanove microcontroller; high resonant frequency; knowledge-based authentication technique; load control; password controller; receiving antenna intersection; resonance inductive coupling wireless power technique; robust password security system reliability; small scale wireless power transfer system monitoring; transmitting antenna maximum efficiency; wireless communication revolution; wireless electrical power design; wireless power revolution; wireless power system control; Coils; Communication system security; Generators; Inductors; Power systems; Resonant frequency; Wireless communication; Resonant Frequency and Arduino Deumilanove Microcontroller; Wireless Power Transfer;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Research and Development (SCOReD), 2013 IEEE Student Conference on
Conference_Location :
Putrajaya
Type :
conf
DOI :
10.1109/SCOReD.2013.7002535
Filename :
7002535
Link To Document :
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