|
1. L. Haichang, and J. Jiang, "Flywheel energy storage—An upswing technology for energy sustainability," Energy and buildings, vol. 39, no.5, pp. 599-604, May 2007
|
|
2. H. Di, A. Sarosh, and Y.-F. Dong, "A novel KFCM based fault diagnosis method for unknown faults in satellite reaction wheels," ISA transactions, vol. 51, no.2, pp. 309-316, March 2012
|
|
3. L. Chunchuan, X. Jing, S. Daley, and F. Li, "Recent advances in micro-vibration isolation," Mechanical Systems and Signal Processing, vol. 56, pp. 55-80, May 2015
|
|
4. L. Qing, D. Li, W. Zhou, J. Jiang, G. Yang, and X. Wei, "Dynamic modelling and observation of micro-vibrations generated by a Single Gimbal Control Moment Gyro," Journal of Sound and Vibration, vol. 332, no.19, pp. 4496-4516, September 2016
|
|
5. S. Michael, T. Roschke, E. Bindl, and D. Blonski, "Design and development of a compact magnetic bearing momentum wheel for micro and small satellites," in 15th Annual/USU Conference on Small Satellites, pp. 1-9, 2001
|
|
6. Z. Christof, T. Baumgartner, and J.W. Kolar, "High-speed magnetically levitated reaction wheel demonstrator," in Power Electronics Conference (IPEC-Hiroshima 2014-ECCE-ASIA) International, pp.1707-1714, May 2014
|
|
7. B. Hannes, M. Cole, P. Keogh, R. Larsonneur, E. Maslen, Y. Okada, G. Schweitzer, and A. Traxler, "Magnetic bearings: theory, design, and application to rotating machinery," Springer Science & Business Media, 2009
|
|
8. B. Pietro, M. Blanke, P. Castaldi, N. Mimmo, and S. Simani, "Combined Geometric and Neural Network Approach to Generic Fault Diagnosis in Satellite Reaction Wheels," Ifac-papersonline, pp. 194-199, January 2015
|
|
9. M.P. Le, E. van der Heide, R. Seiler, and E.J.E. Cottaar. "Detection and diagnosis of ball bearing imperfections in reaction wheels by micro-vibration test," in 12th European Conference on Spacecraft Structures, Materials and Environmental Testing, pp.53-58, July 2012.
|
|
10. N. Othman, I. Gueddi, P. Dague, and K. Benothman, "Spacecraft actuator diagnosis with principal component analysis: application to the rendez-vous phase of the mars sample return mission," Journal of Control Science and Engineering, pp. 22-32, January 2015
|
|
11. K. Sathyan, H.Y.Hsu, S.H.Lee, and K.Gopinath, "A Bearing Cartridge Assembly for Long-Term Performance of Momentum/Reaction Wheels used in Spacecraft," Tribology in Industry, vol. 36, no. 1, pp. 22-32, March 2014
|
|
12. B. Roberto, A. Sutera, and A. Vulpiani, "The mechanism of stochastic resonance," Journal of Physics A: mathematical and general, vol. 14, no.11, pp. L453-L457, November 1981
|
|
13. M.D. McDonnell, and D. Abbott, "What is stochastic resonance? Definitions, misconceptions, debates, and its relevance to biology," PLoS Comput Biol, vol. 5, no.5, pp. 1-9, May 2009
|
|
14. S. Marchesiello, A. Fasana, and L. Garibaldi, "Best parameter choice of Stochastic Resonance to enhance fault signature in bearings," in International Conference on Structural Engineering Dynamics, pp. 1-7, June 2015
|
|
15. G. Luca, P. H?nggi, P. Jung, and F. Marchesoni, "Stochastic resonance," Reviews of modern physics, vol. 70, no.1, pp. 223-287, January 1998
|
|
16. C.U. Mba, S. Marchesiello, A. Fasana, and L. Garibaldi, "Vibration Based Condition Monitoring of Spur Gears in Mesh using Stochastic Resonance," in Surveillance 8 International Conference, pp. 1-15, October 2015
|
|
17. X.J. Jing, Z.Q. Lang, S.A. Billings, G.R. Tomlinson, "Frequency domain analysis for suppression of output vibration from periodic disturbance using nonlinearities," Journal of Sound and vibration, vol. 314, no.3, pp. 536-557, July 2008
|