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Optimal Design of a Resonance-Based Voltage Boosting Rectifier for Wireless Power Transmission.
- Source :
- IEEE Transactions on Industrial Electronics; Feb2018, Vol. 65 Issue 2, p1645-1654, 10p
- Publication Year :
- 2018
-
Abstract
- This paper presents the design procedure for a new multicycle resonance-based voltage boosting rectifier (MCRR) capable of delivering a desired amount of power to the load (PDL) at a designated high voltage through a loosely coupled inductive link. This is achieved by shorting the receiver (Rx) LC\--\tank for several cycles to harvest and accumulate the wireless energy in the RX inductor before boosting the voltage by breaking the loop and transferring the energy to the load in a quarter cycle. By optimizing the geometries of the transmitter (Tx) and Rx coils and the number of cycles, $N$, for energy harvesting, through an iterative design procedure, the MCRR can achieve the highest PDL under a given set of design constraints. Governing equations in the MCRR operation are derived to identify key specifications and the design guidelines. Using an exemplary set of specs, the optimized MCRR was able to generate 20.9 $V_{{\rm{dc}}} across a 100 kΩ load from \text1.8\,Vp, 6.78-MHz sinusoid input in the industrial-scientific-medical-band at a Tx/Rx coil separation of 1.3 cm, power transfer efficiency of 2.2%, and N=9 cycles. At the same coil distance and loading, coils optimized for a conventional half-wave rectifier were able to reach only 13.6 $V_{{\rm{dc}}}$ from the same source. [ABSTRACT FROM PUBLISHER]
Details
- Language :
- English
- ISSN :
- 02780046
- Volume :
- 65
- Issue :
- 2
- Database :
- Complementary Index
- Journal :
- IEEE Transactions on Industrial Electronics
- Publication Type :
- Academic Journal
- Accession number :
- 126820568
- Full Text :
- https://doi.org/10.1109/TIE.2017.2733456