Simulation of 4-coils Magnetic Resonance Coupling for Multiple Receivers Wireless Power Transfer at Various Transmission Distance
Shun Yao Tan, Hui Jing Lee, K. Y. Lau, Pin Jern Ker
Abstract
Shun Yao Tan, Hui Jing Lee, K. Y. Lau, Pin Jern Ker
Abstract
This paper performs a critical review on multiple receivers' wireless power transfer with magnetic resonance with a 4-coils structure. CST software is used for the simulation work to observe magnetic resonance coupling for multiple receiver's wireless power transfer at a varied separation distance between the transmitter coil and receiver coil. Comparative analysis was performed at a separation distance of 3, 6, 9, 12, and 15 cm. Electric and magnetic fields, scattering output and impedance are the output parameters recorded and analyzed.
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This paper performs a critical review on multiple receivers' wireless power transfer with magnetic resonance with a 4-coils structure. CST software is used for the simulation work to observe magnetic resonance coupling for multiple receiver's wireless power transfer at a varied separation distance between the transmitter coil and receiver coil. Comparative analysis was performed at a separation distance of 3, 6, 9, 12, and 15 cm. Electric and magnetic fields, scattering output and impedance are the output parameters recorded and analyzed.
Key concepts: Wireless power transfer, Electromagnetic coil, Transmitter, Coupling (piping), Inductive coupling, Resonant inductive coupling, Electrical impedance, Acoustics