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Power Stability Control Strategy of the WPT System Based on Load Detection
Author(s) -
Ming Zhang,
Xueliang Huang,
Linlin Tan,
Han Liu
Publication year - 2020
Publication title -
iop conference series materials science and engineering
Language(s) - English
Resource type - Journals
eISSN - 1757-899X
pISSN - 1757-8981
DOI - 10.1088/1757-899x/752/1/012003
Subject(s) - constant power circuit , maximum power transfer theorem , inductance , control theory (sociology) , voltage , wireless power transfer , electric power system , electrical engineering , input impedance , power (physics) , engineering , computer science , electromagnetic coil , power factor , control (management) , physics , quantum mechanics , artificial intelligence
The output power fluctuates when offset occurs between the receiving coil and the transmitting coil or load equivalent impedance changes in a wireless power transfer system (WPT). These two conditions will affect the safety of the system and the life of the battery load. Therefore, effective control methods are needed to ensure the stability of the load power. This paper analyzes the WPT system with LCC/S compensation topology and the secondary side containing DC/DC circuit. The relationship between mutual inductance and load voltage and current, mutual inductance and the system transmission efficiency, DC/DC circuit duty ratio and load voltage and current are deduced. The output power stability control strategy through load voltage and load current detection and control of DC/DC circuit is proposed. Finally, the WPT system with 1 kW output power is built through simulation and experiment, which verifies the effectiveness and correctness of theoretical analysis and control strategy in this paper.

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