Paper
28 September 1999 Vibratory response modeling and verification of a high-precision optical positioning system
Juan Barraza Jr., Deming Shu, Tuncer M. Kuzay, Thomas J. Royston
Author Affiliations +
Abstract
A generic vibratory-response modeling program has been developed as a tool for designing high-precision optical positioning systems. Based on multibody dynamics theory, the system is modeled as rigid-body structures connected by linear elastic elements, such as complex actuators and bearings. The full dynamic properties of each element are determined experimentally or theoretically, then integrated into the program as inertial and stiffness matrices. Utilizing this program, the theoretical and experimental verification of the vibratory behavior of a double- multiplier monochromator support and positioning system is presented. Results of parametric design studies that investigate the influence of support floor dynamics and highlight important design issues are also presented. Overall, good matches between theory and experiment demonstrate the effectiveness of the program as a dynamic modeling tool.
© (1999) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Juan Barraza Jr., Deming Shu, Tuncer M. Kuzay, and Thomas J. Royston "Vibratory response modeling and verification of a high-precision optical positioning system", Proc. SPIE 3786, Optomechanical Engineering and Vibration Control, (28 September 1999); https://doi.org/10.1117/12.363840
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Cited by 3 scholarly publications.
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KEYWORDS
Actuators

Systems modeling

Kinematics

Monochromators

Matrices

Modal analysis

3D modeling

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