Integrated Adaptive Control for Spacecraft Attitude and Orbit Tracking Using Disturbance Observer

被引:0
作者
Kewei Xia
Youngho Eun
Taeyang Lee
Sang-Young Park
机构
[1] Yonsei University Observatory,Astrodynamics and Control Laboratory, Department of Astronomy
[2] Yonsei University,undefined
来源
International Journal of Aeronautical and Space Sciences | 2021年 / 22卷
关键词
Spacecraft tracking control; Adaptive control; Disturbance observer; Control allocation; Experimental validation;
D O I
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中图分类号
学科分类号
摘要
This paper addresses the control issue of the integrated attitude and orbit tracking of spacecraft in the presence of inertia parameter uncertainty and spatial disturbance. By considering thruster as the control actuator, the 6-degree-of-freedom integrated model consisting of attitude and orbit dynamics is formulated. Based on the backstepping design, an adaptive control strategy is developed by exploiting a projected disturbance observer that compensates for the dynamics uncertainty and an adaptive algorithm that counteracts the observer error. Moreover, an optimal control allocation solution is employed to get the control command of each thruster. Stability analysis proves that the overall closed-loop system is ultimately bounded. To validate the proposed control, the hardware-in-the-loop experiment examples are conducted on the ground testbed facility. Simulation and experiment results show that the spacecraft/simulator can achieve the trajectory tracking and attitude synchronization simultaneously.
引用
收藏
页码:936 / 947
页数:11
相关论文
共 78 条
[1]  
Kristiansen R(2008)Spacecraft coordination control in 6DOF: integrator backstepping vs passivity-based control Automatica 44 2896-2901
[2]  
Nicklasson PJ(2009)Spacecraft formation flying: a review and new results on state feedback control Acta Astronaut 65 1537-1552
[3]  
Gravdahl JT(2012)Adaptive controller design for spacecraft formation flying using sliding mode controller and neural networks J Frankl Inst 349 578-603
[4]  
Kristiansen R(2017)Dexterous tethered space robot: design, measurement, control, and experiment IEEE Trans Aerosp Electron Syst 53 1452-1468
[5]  
Nicklasson PJ(2017)Releasing dynamics and stability control of maneuverable tethered space net IEEE/ASME Trans Mechatron 22 983-993
[6]  
Bae J(2015)Coordinated stabilization of tumbling targets using tethered space manipulators IEEE Trans Aerosp Electron Syst 51 2420-2432
[7]  
Kim Y(2017)Disturbance observer based fault-tolerant control for cooperative spacecraft rendezvous and docking with input saturation Nonlinear Dyn 88 2735-2745
[8]  
Huang P(2019)Adaptive saturated fault-tolerant control for spacecraft rendezvous with redundancy thrusters IEEE Trans Control Syst Technol 143 29-36
[9]  
Zhang F(2018)Adaptive relative pose control of spacecraft with model couplings and uncertainties Acta Astronaut 86 167-187
[10]  
Cai J(2013)Robust adaptive integrated translation and rotation control of a rigid spacecraft with control saturation and actuator misalignment Acta Astronaut 38 566-577