Journal of Engineering and Applied Sciences

Year: 2014
Volume: 9
Issue: 4
Page No. 78 - 84

Neural Network Optimization of Design Parameters of Stewart Platform for Effective Active Vibration Isolation

Authors : Rahmath Ulla Baig and S. Pugazhenthi

References

Baig, R.U. and S. Pugazhenthi, 2010. Modelling of a class of Stewart platform for six degree of freedom active vibration isolation. Int. J. Eng. Simul., 11: 1468-1477.
Direct Link  |  

Baig, R.U. and S. Pugazhenthi, 2011. Design optimization of an active vibration isolation system. Int. J. Phys. Sci., 6: 6882-6890.
Direct Link  |  

Cheng, Y., G. Ren and S.L. Dai, 2004. The multi-body system modelling of the Gough-Stewart platform for vibration control. J. Sound Vibr., 271: 599-614.
CrossRef  |  Direct Link  |  

Doug, T., C. Mark and V. Juris, 1998. Six axis vibration isolation using modern control techniques. Proceedings of the American Astronautical Society: Guidance and Control Conference, February 4-8, 1998, Washington, DC., USA., pp: 99-106.

Hanieh, A.A., 2003. Active Isolation and damping of vibrations via Stewart platform. Ph.D. Thesis, Department of Mechanical Engineering and Robotics, Active Structures Laboratory, Brussels, Belgium.

Hauge, G.S. and M.E. Campbell, 2004. Sensors and control of a space-based six-axis vibration isolation system. J. Sound Vibr., 269: 913-931.
CrossRef  |  Direct Link  |  

Li, B., W. Zhao and Z. Deng, 2012. Modeling and analysis of a multi-dimensional vibration isolator based on the parallel mechanism. J. Manuf. Syst., 31: 50-58.
CrossRef  |  Direct Link  |  

Lin, H. and J.E. McInroy, 2006. Disturbance attenuation in precise hexapod pointing using positive force feedback. Control Eng. Pract., 14: 1377-1386.
CrossRef  |  Direct Link  |  

Preumont, A., M. Horodinca, I. Romanescu, B. de Marneffe and A. Avraam et al., 2007. A six-axis single-stage active vibration isolator based on Stewart platform. J. Sound Vibr., 300: 644-661.
CrossRef  |  Direct Link  |  

Ren, G., Q. Lu, N. Hu, R. Nan and B. Peng, 2004. On vibration control with Stewart parallel mechanism. Mechatronics, 14: 1-13.
CrossRef  |  Direct Link  |  

Skullestad, A., 2003. Improved instrument accuracy using active vibration damping. Mechatronics, 13: 451-464.
CrossRef  |  Direct Link  |  

Wang, Z. and W. Zhang, 2009.. Adaptive active vibration control for a piezoelectric Stewart platform. Proceedings of the IEEE International Conference on Intelligent Computing and Intelligent Systems, Volume 2, November 20-22, 2009, Beijing, China, pp: 752-756.

Yang, T., J Ma, Z.G. Hou and M. Tan, 2009. Robust backstepping control of active vibration isolation using a stewart platform. Proceedings of the IEEE International Conference on Robotics and Automation, May 12-17, 2009, Kobe, Japan, pp: 1788-1793.

Yang, T., J. Ma, Z.G. Hou, F. Jing and M. Tan, 2009. Nonlinear robust control method for active vibration isolation using a Stewart Platform. Proceedings of the IEEE International Conference on Robotics and Biomimetics, February 22-25, 2009, Bangkok, pp: 1059-1064.

Yun, Y. and Y. Li, 2011. A general dynamics and control model of a class of multi-DOF manipulators for active vibration control. Mechanism Mach. Theory, 46: 1549-1574.
CrossRef  |  Direct Link  |  

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