Title :
High efficient rectenna using a harmonic rejection low pass filter for RF based wireless power transmission
Author :
Minseok Han ; Seunghwan Jung ; Hoon Sohn
Author_Institution :
Center for Integrated Smart Sensors, Korea Adv. Inst. of Sci. & Technol., Daejeon, South Korea
Abstract :
A high efficient 915 MHz rectenna is designed using a harmonic rejection low pass filter (LPF). The proposed rectenna consists of a slot coupled dipole antenna and high order harmonic rejection LPF, voltage doubler type rectifier, a LPF for the DC path, and resistive load. The use of a 2nd and 3rd harmonic rejection LPF in the rectenna results in high conversion efficiency. Performance of rectenna is analyzed using harmonic balance analysis. The proposed rectenna achieves a RF to DC conversion efficiency of 74.8 % when the received RF power is 62.2 mW. The maximum output DC voltage across RL was 7.2 V at a distance of d = 50 cm from the transmitter and the possible maximum transmission distance can be achieved by 2 m at steel box girder type Gimpo Bridge.
Keywords :
dipole antennas; low-pass filters; radiofrequency filters; radiofrequency power transmission; rectennas; rectifiers; slot antennas; DC path; LPF; RF based wireless power transmission; distance 2 m; distance 50 cm; efficiency 74.8 percent; frequency 915 MHz; harmonic balance analysis; high conversion efficiency; high efficient rectenna; high order harmonic rejection LPF; low pass filter; maximum transmission distance; power 62.2 mW; resistive load; slot coupled dipole antenna; steel box girder type Gimpo Bridge; voltage 7.2 V; voltage doubler type rectifier; Antenna measurements; Dipole antennas; Harmonic analysis; Power harmonic filters; Radio frequency; Rectennas; Wireless sensor networks; RF based wireless power transmission; harmonic rejection low pass filter; rectenna; structural health monitoring; wireless sensor networks;
Conference_Titel :
Wireless Communications Systems (ISWCS), 2014 11th International Symposium on
Conference_Location :
Barcelona
DOI :
10.1109/ISWCS.2014.6933390