TY - JOUR
T1 - Fixed-time coordination control for 6-DOF attitude-orbit coupled spacecraft formation flying
AU - Wang, Zhihong
AU - Hu, Weiduo
N1 - Publisher Copyright:
© 2024 COSPAR
PY - 2024/8/15
Y1 - 2024/8/15
N2 - This paper presents a distributed fixed-time control protocol for 6-DOF(degree-of-freedom) attitude-orbit coupled spacecraft formation flying with external disturbances. Firstly, the 6-DOF attitude-orbit coupled dynamics is established. The communication topology between the spacecraft in the formation is described by a directed graph. Secondly, a fixed-time disturbance observer (FxTDO) is designed to ensure that the estimation errors of the unknown external disturbances can converge to zero in fixed time. Thirdly, based on non-singular fixed-time terminal sliding mode (NFFTSM) surface, the fixed-time coordination control protocol is proposed combined with the fixed-time disturbance observer, which can guarantee that each spacecraft can track their desirable positions and attitudes in fixed time. The stability of the closed-loop system is proved through Lyapunuov method. Finally, simulation results for a formation with one virtual leader and five followers demonstrate the effectiveness of the proposed control scheme.
AB - This paper presents a distributed fixed-time control protocol for 6-DOF(degree-of-freedom) attitude-orbit coupled spacecraft formation flying with external disturbances. Firstly, the 6-DOF attitude-orbit coupled dynamics is established. The communication topology between the spacecraft in the formation is described by a directed graph. Secondly, a fixed-time disturbance observer (FxTDO) is designed to ensure that the estimation errors of the unknown external disturbances can converge to zero in fixed time. Thirdly, based on non-singular fixed-time terminal sliding mode (NFFTSM) surface, the fixed-time coordination control protocol is proposed combined with the fixed-time disturbance observer, which can guarantee that each spacecraft can track their desirable positions and attitudes in fixed time. The stability of the closed-loop system is proved through Lyapunuov method. Finally, simulation results for a formation with one virtual leader and five followers demonstrate the effectiveness of the proposed control scheme.
KW - 6-DOF attitude-orbit control
KW - Coordination control
KW - Fixed-time convergence
KW - Fixed-time disturbance observer
KW - Robust control
KW - Spacecraft formation flying
UR - https://www.scopus.com/pages/publications/85195031963
U2 - 10.1016/j.asr.2024.05.042
DO - 10.1016/j.asr.2024.05.042
M3 - 文章
AN - SCOPUS:85195031963
SN - 0273-1177
VL - 74
SP - 1950
EP - 1966
JO - Advances in Space Research
JF - Advances in Space Research
IS - 4
ER -