Paper
21 June 2006 CAISER MYMESIS: a new software platform for virtual and actual vibration testing on rotating structures using a continuously scanning LDV technique
D. Di Maio, D. J. Ewins
Author Affiliations +
Proceedings Volume 6345, Seventh International Conference on Vibration Measurements by Laser Techniques: Advances and Applications; 63450Q (2006) https://doi.org/10.1117/12.693081
Event: Seventh International Conference on Vibration Measurements by Laser Techniques: Advances and Applications, 2006, Ancona, Italy
Abstract
The aim of this paper is to present an overview of the CAISER MYMESIS software platform that has been developed to simulate and to perform the vibration measurement procedures using Tracking/Continuous Scanning LDV (T/CSLDV) methods, such as area scan on structures under both stationary and rotating conditions. Mathematical models to simulate the LDV output for all CSLDV methods are also included in the software platform as well as the traditional Step-Scanning approach. The software platform can be used in one of two modes: (i) first, to conduct a 'virtual test' to explore various proposed test configurations in order to define an optimum test specification, and (ii) second, to carry out an actual measurement, including driving the scanning mirrors, acquiring data and quickly post-processing data for an immediate inspection of the ODS of the vibrating structures.
© (2006) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
D. Di Maio and D. J. Ewins "CAISER MYMESIS: a new software platform for virtual and actual vibration testing on rotating structures using a continuously scanning LDV technique", Proc. SPIE 6345, Seventh International Conference on Vibration Measurements by Laser Techniques: Advances and Applications, 63450Q (21 June 2006); https://doi.org/10.1117/12.693081
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Cited by 10 scholarly publications.
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KEYWORDS
Laser Doppler velocimetry

Mirrors

Data modeling

Finite element methods

Signal processing

Mathematical modeling

Speckle

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