TY - JOUR
T1 - Design of active disturbance rejection control for inductive power transfer systems
AU - Wang, Yanan
AU - Dong, Lei
AU - Liao, Xiaozhong
AU - Ju, Xinglong
AU - Xiao, Furong
N1 - Publisher Copyright:
© 2018 KIPE.
PY - 2018/9
Y1 - 2018/9
N2 - The control design of inductive power transfer (IPT) systems has attracted a lot of attention in the field of wireless power transmission. Due to the high-order resonant networks and multiple loads in IPT systems, a simplified model of an IPT system is preferred for analysis and control design, and a controller with strong robustness is required. Hence, an active disturbance rejection control (ADRC) for IPT systems is proposed in this paper. To realize the employment of ADRC, firstly a small-signal model of an LC series-compensative IPT system is derived based on generalized state-space averaging (GSSA), then the ADRC is implemented in the designed IPT system. The ADRC not only provides superior robustness to unknown internal and external disturbances, but also requires few knowledge of the IPT system. Due to the convenient realization of ADRC, the designed IPT system retains its simple structure without any additional circuits. Finally, a frequency domain analysis and experimental results have validated the effectiveness of the employed ADRC, especially its robustness in the presence of frequency drifts and other common disturbances.
AB - The control design of inductive power transfer (IPT) systems has attracted a lot of attention in the field of wireless power transmission. Due to the high-order resonant networks and multiple loads in IPT systems, a simplified model of an IPT system is preferred for analysis and control design, and a controller with strong robustness is required. Hence, an active disturbance rejection control (ADRC) for IPT systems is proposed in this paper. To realize the employment of ADRC, firstly a small-signal model of an LC series-compensative IPT system is derived based on generalized state-space averaging (GSSA), then the ADRC is implemented in the designed IPT system. The ADRC not only provides superior robustness to unknown internal and external disturbances, but also requires few knowledge of the IPT system. Due to the convenient realization of ADRC, the designed IPT system retains its simple structure without any additional circuits. Finally, a frequency domain analysis and experimental results have validated the effectiveness of the employed ADRC, especially its robustness in the presence of frequency drifts and other common disturbances.
KW - Active disturbance rejection control
KW - Frequency drift
KW - Generalized state-space averaging
KW - Inductive power transfer
KW - Small-signal model
UR - http://www.scopus.com/inward/record.url?scp=85055135668&partnerID=8YFLogxK
U2 - 10.6113/JPE.2018.18.5.1434
DO - 10.6113/JPE.2018.18.5.1434
M3 - Article
AN - SCOPUS:85055135668
SN - 1598-2092
VL - 18
SP - 1434
EP - 1447
JO - Journal of Power Electronics
JF - Journal of Power Electronics
IS - 5
M1 - JPE 18-5-13
ER -