DocumentCode
623251
Title
Design and analysis of efficient rectifiers for wireless power harvesting in DBS devices
Author
Hosain, Md Kamal ; Kouzani, Abbas Z.
Author_Institution
Sch. of Eng., Deakin Univ., Geelong, VIC, Australia
fYear
2013
fDate
19-21 June 2013
Firstpage
651
Lastpage
655
Abstract
This paper presents an analysis of optimum rectifier circuits for wireless energy harvesting in deep brain stimulation (DBS) devices. Since DBS demands compact and low power consumption devices, small, high conversion efficient, and high output voltage rectifiers need to be developed. The investigation that is presented in this paper is analytical and simulated based. Analysis on a variety of circuit configurations brings more evidence to improve the performance of rectifiers. Analytical parameters influencing the output DC voltage and the efficiency of the rectifiers are described. The operating frequency of the 915 MHz industrial, scientific and medical (ISM) radio band is used in this study. The maximum conversion efficiency of the LC matched half wave rectifier, the Greinacher voltage doubler, the Delon doubler, and the 2-stage voltage multiplier is obtained as 56.34%, 74.45%, 71.48%, and 31.44%, respectively, at the 30 dBm input power level. The corresponding maximum output DC voltages are 6.27 V, 16.83 V, 13.36 V, and 9.20 V. Thus the Greinacher voltage doubler is deemed as the best configuration according to the conversion efficiency and the output voltage measurements.
Keywords
energy harvesting; rectifying circuits; voltage measurement; DBS devices; Greinacher voltage doubler; ISM radio band; LC matched half wave; circuit configurations; consumption devices; conversion efficient; deep brain stimulation; efficient rectifiers analysis; efficient rectifiers design; industrial scientific and medical; maximum conversion efficiency; optimum rectifier circuits; output DC voltage; output voltage measurements; output voltage rectifiers; voltage 13.36 V; voltage 16.83 V; voltage 6.27 V; voltage 9.2 V; wireless energy harvesting; wireless power harvesting; Impedance; Radio frequency; Rectifiers; Resistance; Satellite broadcasting; Schottky diodes; Wireless communication; DBS; passive; power harvesting; rectenna; rectifier;
fLanguage
English
Publisher
ieee
Conference_Titel
Industrial Electronics and Applications (ICIEA), 2013 8th IEEE Conference on
Conference_Location
Melbourne, VIC
Print_ISBN
978-1-4673-6320-4
Type
conf
DOI
10.1109/ICIEA.2013.6566448
Filename
6566448
Link To Document