Title :
Comprehensive Analysis and Measurement of Frequency-Tuned and Impedance-Tuned Wireless Non-Radiative Power-Transfer Systems
Author :
Heebl, J.D. ; Thomas, E.M. ; Penno, R.P. ; Grbic, A.
Author_Institution :
Dept. of Electr. Eng. & Comput. Sci., Univ. of Michigan, Ann Arbor, MI, USA
Abstract :
This paper theoretically and experimentally investigates frequency-tuned and impedance-tuned wireless non-radiative power-transfer (WNPT) systems. Closed-form expressions for the efficiencies of both types of systems are presented as functions of frequency and system (circuit) parameters. In the frequency-tuned system, the operating frequency is adjusted to compensate for changes in mutual inductance that occur for variations of transmitter and receiver loop positions. Frequency-tuning is employed for a range of distances over which the loops are strongly coupled. In contrast, the impedance-tuned system employs varactor-based matching networks to compensate for changes in mutual inductance, and to achieve a simultaneous conjugate impedance match over a range of distances. The frequency-tuned system is simpler to implement, while the impedance-tuned system is more complex, but can achieve higher efficiencies. Both of the experimental wireless non-radiative power-transfer systems studied employ resonant shielded loops as transmitting and receiving devices.
Keywords :
impedance matching; inductance; inductive power transmission; radio receivers; radio transmitters; resonators; varactors; closed-form expression; frequency-tuned wireless nonradiative power transfer system measurement; impedance match; impedance-tuned wireless nonradiative power transfer system measurement; inductive power transmission; mutual inductance; receiver loop position; receiving resonator; resonant shielded loop; transmitter loop position; transmitting resonator; varactor-based matching network; Couplings; Impedance; Inductive power transmission; Magnetic coupling; Mathematical model; Mutual coupling; Power transmission lines; Resonant frequency; Tuning; Varactors; Wireless communication; Mutual coupling; inductive power transmission; resonant magnetic coupling; transmission line antennas; tuned circuits; varactor; wireless power;
Journal_Title :
Antennas and Propagation Magazine, IEEE
DOI :
10.1109/MAP.2014.6971924