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Research and Design of Misalignment-Tolerant LCC–LCC Compensated IPT System With Constant-Current and Constant-Voltage Output

Jingang Li, Xuze Zhang, Xiangqian Tong

2022IEEE Transactions on Power Electronics54 citationsDOI

Abstract

It is well known that loads of inductive power transfer systems are often energy storage devices. The major benefit of an LCC–LCC compensation topology is that without the additional compensation elements and control methods, the load-independent constant current (CC) and constant voltage (CV) outputs, required by energy storage load, can be achieved at different resonant frequencies. However, the misalignment between two coils at the transmitting and receiving sides is inevitable and can lead to the variation of the resonant frequency in CC or CV output. Therefore, a unique design approach to the LCC–LCC compensation topology is proposed in this article. With the presented method, the resonant frequency, at which load-independent output characteristics can be also implemented, is constant and unaffected by the coupling coefficient, whether in CC mode or CV mode. Furthermore, the transmission gain, which is only impacted by the coupling coefficient, can be conveniently modified by the conventional phase shift control in two modes. Finally, a 120-W prototype is designed to verify the validity of the theoretical analysis. The output current and output voltage fluctuate by only 2.4% and 1.0% in the coupling coefficient range from 0.23 to 0.3 and the large load range, according to experimental results.

Topics & Concepts

Coupling coefficient of resonatorsCompensation (psychology)Control theory (sociology)Constant (computer programming)VoltageConstant currentTopology (electrical circuits)Coupling (piping)Range (aeronautics)EngineeringElectrical engineeringComputer scienceControl (management)Aerospace engineeringProgramming languagePsychologyResonatorArtificial intelligencePsychoanalysisMechanical engineeringWireless Power Transfer SystemsEnergy Harvesting in Wireless NetworksInnovative Energy Harvesting Technologies
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