TY - GEN
T1 - Distributed Coordinated Control of Spacecraft Formation Flying under Limited Resources
AU - Shi, Yongxia
AU - Hu, Qinglei
AU - Wang, Chenliang
AU - Shao, Xiaodong
N1 - Publisher Copyright:
© 2019 JSME.
PY - 2019/6
Y1 - 2019/6
N2 - In this paper, a novel event-based distributed control scheme is proposed to address the coordinated control problem for multiple spacecraft formation flying, in the presence of mass uncertainties and external disturbances. Considering that the on-board resources in terms of communication and computation are limited, the event-triggered mechanism is applied to regulate the information transmission frequency among formation spacecraft and to govern the update time of the controllers. In doing so, each spacecraft only needs to broadcast information and update its own control command when the specified events occur, thus relaxing the communication network burden and saving on-board resources. Moreover, the inter-event time intervals are shown to be strictly positive so that no Zeno behavior executes. By Lyapunov's stability theorem and topology theory, it is proved that the formation-keeping maneuvers are globally asymptotically achieved. Finally, simulation results are presented to show the effectiveness of the proposed control scheme.
AB - In this paper, a novel event-based distributed control scheme is proposed to address the coordinated control problem for multiple spacecraft formation flying, in the presence of mass uncertainties and external disturbances. Considering that the on-board resources in terms of communication and computation are limited, the event-triggered mechanism is applied to regulate the information transmission frequency among formation spacecraft and to govern the update time of the controllers. In doing so, each spacecraft only needs to broadcast information and update its own control command when the specified events occur, thus relaxing the communication network burden and saving on-board resources. Moreover, the inter-event time intervals are shown to be strictly positive so that no Zeno behavior executes. By Lyapunov's stability theorem and topology theory, it is proved that the formation-keeping maneuvers are globally asymptotically achieved. Finally, simulation results are presented to show the effectiveness of the proposed control scheme.
UR - https://www.scopus.com/pages/publications/85069942357
M3 - 会议稿件
AN - SCOPUS:85069942357
T3 - 2019 12th Asian Control Conference, ASCC 2019
SP - 1143
EP - 1148
BT - 2019 12th Asian Control Conference, ASCC 2019
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 12th Asian Control Conference, ASCC 2019
Y2 - 9 June 2019 through 12 June 2019
ER -