[1] H. Taei, "Survey of Hardware-Based Satellite Attitude Dynamics Simulators," Aerospace Science and Technology, vol. 6, no. 2, pp. 87-101, 2017.
[2] J. S. Young, "Development of an automatic balancing system for a small satellite attitude control simulator," 1, Ed., ed Logan, Utah: UMI, 1998, pp. 52-55.
[3] S. Chesi, Q. Gong, V. Pellegrini, R. Cristi, and M. Romano, "Automatic mass balancing of a spacecraft three-axis simulator: Analysis and experimentation," Journal of Guidance, Control, and Dynamics, vol. 37, no. 1, pp. 197-206, 2014.
[4] J. Prado, G. Bisiacchi, L. Reyes, E. Vicente, F. Contreras, M. Mesinas, et al., "Three-axis air-bearing based platform for small satellite attitude determination and control simulation," Journal of Applied Research and Technology, vol. 3, no. 3, pp. 222-237, 2005.
[5] N. Sajjad, M. Mershams, and s. Jaliian, "Development of MIL and PIL testbed for Student Microsatellite Attitude Control Subsystem," Space Science and Technology, vol. 13, no. 3, pp. 51-62, 2020.
[6] Mashayekhi Saeedeh, "Automatic Mass Balancing of a Satellite ADCS Subsystem Simulator," M.Sc. Thesis, Faculty of Aerospace Engineering, Khaje Nasir University of Technology, Space Research Lab, 2019.
[7] F. L. Markley and J. L. Crassidis, Fundamentals of spacecraft attitude determination and control, vol. 1286,NewYork, Springer, 2014.
[8] R. C. d. Silva, F. C. Guimarães, J. V. L. d. Loiola, R. A. Borges, S. Battistini, and C. Cappelletti, "Tabletop testbed for attitude determination and control of nanosatellites," Journal of Aerospace Engineering, vol. 32, no. 1, 2019.
[9] K. Hudson, A. Lingenfelter, and J. Hess, Dynamic Mass Balancing of a Spacecraft Test Platform, 2019.
[10] J. J. Kim and B. N. Agrawal, "Automatic Mass Balancing of Air-Bearing-Based Three-Axis Rotational Spacecraft Simulator," Journal of Guidance, Control, and Dynamics, vol. 32, no. 3, pp. 1005-1017, 2009.
[11] A. Bahu and D. Modenini, "Automatic mass balancing system for a dynamic CubeSat attitude simulator: development and experimental validation," CEAS Space Journal, vol. 12, pp. 597-611, 2020.
[12] B. Kim, E. Velenis, P. Kriengsiri, and P. Tsiotras, "Designing a low-cost spacecraft simulator," IEEE Control Systems Magazine, vol. 23, no. 4, pp. 26-37, 2003.
[13] G. Sharifi, M. Mirshams, and H. Shahmohamadi Ousaloo, "Mass properties identification and automatic mass balancing system for satellite attitude dynamics simulator," Proceedings of the Institution of Mechanical Engineers, Part G: Journal of Aerospace Engineering, vol. 233, no. 3, pp. 896-907, 2019.
[14] S. H. Roknabadi, M. Mirshams, and A. A. Nikkhah, "Design and Manufacturing Steps of a Satellite Reaction Wheel," Journal of Space Science and Technology, vol. 2, no. 4, 2010.