TY - JOUR
T1 - Switching LPV control for electromagnetic formation flying on highly elliptical orbit
AU - Lei, Bingyao
AU - Shi, Peng
AU - Xu, Yufei
AU - Zhao, Yushan
N1 - Publisher Copyright:
© 2021, Tsinghua University Press.
PY - 2021/12
Y1 - 2021/12
N2 - The electromagnetic force generated by the interaction of electromagnetic coils can be used to replace the conventional propellant consumption mode in close relative motion control, thereby promoting the application of formation flight technology for long-term and continuous space missions. Herein, a hysteresis-switching logic-based switching linear parameter varying (LPV) controller synthesis technique with guaranteed performance for electromagnetic formation flying on a highly elliptical orbit is proposed. First, considering that the relative dynamics model of an elliptical orbit is characterized by time-varying uncertainty, the LPV model is described. By introducing switching LPV controllers among different scheduled parameter subsets, conservativeness can be reduced. Second, the system modeling error, the uncertainty caused by a simplified electromagnetic coil model, and external disturbance are considered to derive switching LPV controller synthesis conditions based on the guaranteed H∞ performance. Derivation analysis shows that the proposed switching LPV controller not only ensures the robustness of the system against uncertainties, but also realizes the control input constraints. Finally, numerical simulations and comparative analyses are performed to demonstrate the effectiveness and advantages of the proposed control method. [Figure not available: see fulltext.].
AB - The electromagnetic force generated by the interaction of electromagnetic coils can be used to replace the conventional propellant consumption mode in close relative motion control, thereby promoting the application of formation flight technology for long-term and continuous space missions. Herein, a hysteresis-switching logic-based switching linear parameter varying (LPV) controller synthesis technique with guaranteed performance for electromagnetic formation flying on a highly elliptical orbit is proposed. First, considering that the relative dynamics model of an elliptical orbit is characterized by time-varying uncertainty, the LPV model is described. By introducing switching LPV controllers among different scheduled parameter subsets, conservativeness can be reduced. Second, the system modeling error, the uncertainty caused by a simplified electromagnetic coil model, and external disturbance are considered to derive switching LPV controller synthesis conditions based on the guaranteed H∞ performance. Derivation analysis shows that the proposed switching LPV controller not only ensures the robustness of the system against uncertainties, but also realizes the control input constraints. Finally, numerical simulations and comparative analyses are performed to demonstrate the effectiveness and advantages of the proposed control method. [Figure not available: see fulltext.].
KW - electromagnetic formation
KW - formation keeping control
KW - guaranteed cost control
KW - highly elliptical orbit
KW - switching linear parameter varying (LPV)
UR - https://www.scopus.com/pages/publications/85120570483
U2 - 10.1007/s42064-021-0117-x
DO - 10.1007/s42064-021-0117-x
M3 - 文章
AN - SCOPUS:85120570483
SN - 2522-0098
VL - 5
SP - 373
EP - 389
JO - Astrodynamics
JF - Astrodynamics
IS - 4
ER -