TY - JOUR
T1 - Dual LCL resonance compensation for the design of electric vehicle wireless energy transmission system topology
AU - Ma, Jinge
AU - Dong, Lei
N1 - Publisher Copyright:
Copyright © 2024 Inderscience Enterprises Ltd.
PY - 2024
Y1 - 2024
N2 - For reaching the electric vehicle on-board wireless charging regulations, the dual inductor–capacitor–inductor (LCL) resonant compensation network is analysed, and a dual LCL variable compensation parameter magnetically coupled resonant wireless charging system software is clearly proposed. Firstly, we use the primary and secondary side models of two-port network system to obtain the dual LCL mathematical analysis model, and analyse the completion of the constant current or constant voltage output parameter configuration criteria; then, we design the scheme variable compensation parameter circuit structure according to the constant current and constant voltage parameter configuration characteristics; then, we design the parameter configuration to promote the magnetically coupled resonant wireless charging according to the interrelationship between the important main parameters and the system transmission characteristics. Finally, the experimental platform is constructed, and the voltage or flow rate derived from the certified customised system software is relatively small and can meet the constant voltage and constant current charging regulations.
AB - For reaching the electric vehicle on-board wireless charging regulations, the dual inductor–capacitor–inductor (LCL) resonant compensation network is analysed, and a dual LCL variable compensation parameter magnetically coupled resonant wireless charging system software is clearly proposed. Firstly, we use the primary and secondary side models of two-port network system to obtain the dual LCL mathematical analysis model, and analyse the completion of the constant current or constant voltage output parameter configuration criteria; then, we design the scheme variable compensation parameter circuit structure according to the constant current and constant voltage parameter configuration characteristics; then, we design the parameter configuration to promote the magnetically coupled resonant wireless charging according to the interrelationship between the important main parameters and the system transmission characteristics. Finally, the experimental platform is constructed, and the voltage or flow rate derived from the certified customised system software is relatively small and can meet the constant voltage and constant current charging regulations.
KW - constant voltage
KW - dual LCL
KW - electric vehicles
KW - experimental platform
KW - resonance compensation
KW - wireless charging
KW - wireless energy transmission
UR - http://www.scopus.com/inward/record.url?scp=85198382635&partnerID=8YFLogxK
U2 - 10.1504/IJHVS.2024.139694
DO - 10.1504/IJHVS.2024.139694
M3 - Article
AN - SCOPUS:85198382635
SN - 1744-232X
VL - 31
SP - 543
EP - 561
JO - International Journal of Heavy Vehicle Systems
JF - International Journal of Heavy Vehicle Systems
IS - 4
ER -