[1] J. K. Wayer, J.-F. Castet, and J. H. Saleh, "Spacecraft attitude control subsystem: Reliability, multi-state analyses, and comparative failure behavior in LEO and GEO," Acta Astronautica, vol. 85, pp. 83-92, 2013.
[2] J. H. Saleh and J.-F. Castet, Spacecraft reliability and multi-state failures: a statistical approach: John Wiley & Sons, 2011.
[3] M. Tafazoli, "A study of on-orbit spacecraft failures," Acta Astronautica, vol. 64, pp. 195-205, 2009.
[4] A. Rahimi, K. D. Kumar, and H. Alighanbari, "Fault isolation of reaction wheels for satellite attitude control," IEEE Transactions on Aerospace and Electronic Systems, vol. 56, pp. 610-629, 2019.
[5] M. Burakov, I. Krivolapchuk, V. Shishlakov, and D. Yakimovskii, "Fuzzy Control of Spacecraft Reaction Wheel," Gyroscopy and Navigation, vol. 10, pp. 339-345, 2019.
[6] E. Maani, H. Nejat Pishkenari, and Kosari, "Satellite 3Axis Attitude Control Using the Combination of Reaction Wheels and Thrusters," Journal of Space Science and Technology, vol. 11, pp. 63-71, 2018.
[7] P. Tsiotras and V. Doumtchenko, "Control of spacecraft subject to actuator failures: State-of-the-art and open problems," The Journal of the Astronautical Sciences, vol. 48, pp. 337-358, 2000.