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Maximum Efficiency Tracking of a Wireless Power Transfer System With 3-D Coupling Capability Using a Planar Transmitter Coil Configuration

Zhenghao Zhu, Huan Yuan, Cang Liang, C.G. Wang, Simeng Lv, Aijun Yang, Jifeng Chu, Mingzhe Rong, Xiaohua Wang, Aiguo Patrick Hu

2024IEEE Transactions on Power Electronics16 citationsDOI

Abstract

High degrees of coupling freedom in Wireless Power Transfer (WPT) has emerged as a prominent research topic. The challenge lies in achieving a compact structural design for such systems. This study introduces a planar transmitter configuration composed of three decoupled and separately controlled converters to enable three-dimensional wireless power transfer to an arbitrarily positioned receiver above the transmitter. By theoretical analysis based on the Coupled Mode equations, it is found that there is direct relationship between the DC input voltages and currents of the inverters for achieving the maximum efficiency. The spatial magnetic field is shaped by controlling the input voltages based on the measured currents to achieve the best magnetic field coupling for maximum efficiency tracking, regardless of the positioning and alignment of the power pickup. A practical system is built with a 10x10cm transmitter (with 3 decoupled coils) and 3.5x3.5 cm (single coil) receiver, and it is demonstrated that the system can achieve a power transfer efficiency about 80% within 3cm above the transmitter under all 3D coupling conditions.

Topics & Concepts

Wireless power transferTransmitterCoupling (piping)Electromagnetic coilMaximum power transfer theoremPlanarInductive couplingElectrical engineeringPickupVoltagePower (physics)Electronic engineeringConvertersEngineeringComputer scienceAcousticsPhysicsChannel (broadcasting)Mechanical engineeringQuantum mechanicsComputer graphics (images)Artificial intelligenceImage (mathematics)Wireless Power Transfer SystemsEnergy Harvesting in Wireless NetworksInnovative Energy Harvesting Technologies
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