TY - JOUR
T1 - A novel adaptive consensus protocol for multi-spacecraft cooperative tracking control on highly elliptical orbit
AU - LI, Shulong
AU - ZHENG, Zixuan
AU - WANG, Yingjie
AU - JING, Heng
AU - YUAN, Jianping
N1 - Publisher Copyright:
© 2024 The Author(s)
PY - 2025/7
Y1 - 2025/7
N2 - This paper investigates the cooperative tracking control problem of Electromagnetic Formation Spacecraft (EMFS) on elliptical orbit. The actuator saturation and topology switching problems exist in formation cooperative tracking control. The proposed novel adaptive consensus protocol addresses this problem by utilizing both synchronous and asynchronous topology switching. Firstly, to enhance the robustness of the system and minimize the impact of time-varying parameters on the control algorithm, the controller gain is determined through solving the Adaptive Riccati Differential Equation (ARDE). Secondly, a three-layer network communication structure with mirror nodes is constructed, in which different control input saturation levels are designed according to the correlation with the leader. Then, the Average Dwell Time (ADT) switching technique is utilized to generate the control switching signal, ensuring that the topology maintains a directed spanning tree when the switching signal condition is satisfied. Finally, simulation results validate the theoretical findings and provide a comparison with other methods, demonstrating the superiority of the proposed approach.
AB - This paper investigates the cooperative tracking control problem of Electromagnetic Formation Spacecraft (EMFS) on elliptical orbit. The actuator saturation and topology switching problems exist in formation cooperative tracking control. The proposed novel adaptive consensus protocol addresses this problem by utilizing both synchronous and asynchronous topology switching. Firstly, to enhance the robustness of the system and minimize the impact of time-varying parameters on the control algorithm, the controller gain is determined through solving the Adaptive Riccati Differential Equation (ARDE). Secondly, a three-layer network communication structure with mirror nodes is constructed, in which different control input saturation levels are designed according to the correlation with the leader. Then, the Average Dwell Time (ADT) switching technique is utilized to generate the control switching signal, ensuring that the topology maintains a directed spanning tree when the switching signal condition is satisfied. Finally, simulation results validate the theoretical findings and provide a comparison with other methods, demonstrating the superiority of the proposed approach.
KW - Cooperative control
KW - Electromagnetic formation spacecraft (EMFS)
KW - Multi-spacecraft systems
KW - Switching topology
KW - Time-varying systems
UR - http://www.scopus.com/inward/record.url?scp=105008002141&partnerID=8YFLogxK
U2 - 10.1016/j.cja.2024.11.008
DO - 10.1016/j.cja.2024.11.008
M3 - 文章
AN - SCOPUS:105008002141
SN - 1000-9361
VL - 38
JO - Chinese Journal of Aeronautics
JF - Chinese Journal of Aeronautics
IS - 7
M1 - 103298
ER -