[1]
Han J.Q. The Extended State Observer, of a Class of Uncertain Systems [J]. Control and Decision, 1995, 10(1): 85- 88.
Google Scholar
[2]
Han J.Q. Active Disturbance Rejection Control [M]. Beijing: National Defense Industry Press, (2007).
Google Scholar
[3]
Yuan G.P., Shi X.P., Li L. Adaptive Controller for Spacecraft Attitude Maneuver Based on Extended State Observer [J]. Chinese Space Science and Technology, 2011, 10(5): 9-17.
Google Scholar
[4]
Wu Z., Huang L.Y., Wei K.M., Guo L. Active Disturbance Rejection of Attitude for Spacecraft [J]. Control Theory &Applications, 2013, 30(12): 1617-1622.
Google Scholar
[5]
Mapar J. Innovative Approach to the Momentum Management Control for Space Station Freedom [J]. Journal of Guidance, Control and Dynamics, 1993, 16(1): 175-181.
DOI: 10.2514/3.11443
Google Scholar
[6]
Bennett G.J., Sebelius K.P., Barth A.L. ISS Russian Segment Motion Control System Operating Strategy During Orbiter Repair Maneuver [A]. AIAA-2005-5855.
DOI: 10.2514/6.2005-5855
Google Scholar
[7]
Wu Z., Zhao J.H. Design and Simulation of Attitude Control/Momentum Management System of Space Station Using Control Moment Gyroscopes [J]. Journal of System Simulation, 2006, 18(1): 151-154.
Google Scholar
[8]
Zhang J., He Y.Z., Zhang J.J. Attitude Control and Momentum Management of Inertially Oriented Space Station[C]. 19th IFAC Symposium on Automatic Control in Aerospace-ACA 2013, Würzburg, Germany, September 2-6, (2013).
DOI: 10.3182/20130902-5-de-2040.00095
Google Scholar