DocumentCode :
82255
Title :
A Constant Efficiency of Rectifying Circuit in an Extremely Wide Load Range
Author :
Yong Huang ; Shinohara, Nobuhiro ; Mitani, Tomonori
Author_Institution :
Res. Inst. for Sustainable Humanosphere, Kyoto Univ., Uji, Japan
Volume :
62
Issue :
4
fYear :
2014
fDate :
Apr-14
Firstpage :
986
Lastpage :
993
Abstract :
Wireless power transmission (WPT) is actively being researched and developed. WPT transfers power to electrical load without a wire. One of the problems is that the efficiency is easily affected by load resistance and input power. Therefore, an impedance matching circuit becomes crucial for realization of high-efficiency wireless power systems. In this study, we proposed a maximum power point tracking (MPPT) method for a low-power milliwatt-level RF-dc rectifying circuit using a dc-dc converter. We proposed an RF-dc-dc circuit that consists of an RF-dc rectifier circuit and a dc-dc converter. We measured the RF-to-dc conversion efficiency of the RF-dc-dc circuit using 2.45-GHz microwave power. When the buck-boost converter is connected to the rectifying circuit, the RF-to-dc efficiency of rectifier is approximately steady at 75%, despite the load resistance changing from 100 to 5000 Ω. The overall efficiency of the RF-dc-dc circuit is still over 60%, even though the load resistance varied from 100 to 5000 Ω and the input power changed from 40 to 100 mW.
Keywords :
impedance matching; maximum power point trackers; microwave power transmission; rectifying circuits; DC-DC converter; RF-DC rectifying circuit; buck-boost converter; constant efficiency; extremely wide load range; frequency 2.45 GHz; impedance matching circuit; maximum power point tracking method; microwave power; power 100 mW; power 40 mW; resistance 100 ohm; resistance 5000 ohm; wireless power transmission; Electrical resistance measurement; Impedance; Microwave circuits; Rectennas; Rectifying circuits; Resistance; Voltage measurement; DC–DC converter; RF-dc conversion efficiency; RF-dc–dc circuit; low-power rectenna; maximum power point tracking (MPPT); wireless power transmission (WPT);
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2013.2287676
Filename :
6656026
Link To Document :
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