Article (Scientific journals)
Design methodology for maximum power transmission, optimal BER-SNR and data rate in biomedical implants
Al-Kalbani, A. I.; Yuce, M. R.; Redouté, Jean-Michel
2013In IEEE Communications Letters, 17 (10), p. 1897-1900
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Keywords :
Pulse-Width Modulation Amplitude-Shift Keying; PWM-ASK; Amplitude shift keying; BER (bit error rate); Biomedical implants; Design Methodology; Optimal power transfer; Simultaneous transmission; Wireless power; Optimization; Pulse modulation; Pulse width modulation; Voltage control; Counting circuits
Abstract :
[en] Using Pulse-Width Modulation Amplitude-Shift Keying (PWM-ASK) in biomedical implants enables the simultaneous transmission of wireless energy as well as data using a single inductive link. This paper approaches Pulse-Width Modulated Amplitude-Shift Keying (PWM-ASK) from a communication theory point of view. It provides a design methodology to obtain high data rate while maintaining an optimal BER (Bit Error Rate), and optimal power transfer in biomedical implants. © 2013 IEEE.
Disciplines :
Electrical & electronics engineering
Author, co-author :
Al-Kalbani, A. I.;  Dept. of Electrical and Computer Systems Engineering, Monash University, Australia
Yuce, M. R.;  Dept. of Electrical and Computer Systems Engineering, Monash University, Australia
Redouté, Jean-Michel  ;  Université de Liège - ULiège > Dép. d'électric., électron. et informat. (Inst.Montefiore) > Systèmes microélectroniques intégrés
Language :
English
Title :
Design methodology for maximum power transmission, optimal BER-SNR and data rate in biomedical implants
Publication date :
2013
Journal title :
IEEE Communications Letters
ISSN :
1089-7798
Publisher :
Institute of Electrical and Electronics Engineers, United States - New York
Volume :
17
Issue :
10
Pages :
1897-1900
Peer reviewed :
Peer Reviewed verified by ORBi
Available on ORBi :
since 04 November 2018

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