DocumentCode :
858668
Title :
Noncontact speckle-based velocity sensor [laser Doppler vibrometer]
Author :
Di Donato, Andrea ; Scalise, Lorenzo ; Zappelli, LeonardO
Author_Institution :
Ist. di Elethomagnetismo e Bioingegneria, Ancona Univ., Italy
Volume :
53
Issue :
1
fYear :
2004
Firstpage :
51
Lastpage :
57
Abstract :
Laser light illuminating a rough surface generates speckle phenomena in the space around the surface. In this paper, the authors propose a noncontact laser Doppler vibrometer (LDV) sensor, using the speckle phenomena, for the assessment of target velocity and displacement at low vibration frequencies. The sensor is realized using few optical components in a very simple optical configuration. The methodology for the experimental and analytical determination of the sensor sensitivity is reported, and two speckle-processing algorithms have been used to appraise the best cross-correlation function for target velocity measurement. The algorithms are based on binary correlation and fast Fourier transform analysis. Experimental results coming from the comparison of both the proposed techniques are reported. Moreover, results obtained with the proposed speckle sensor have been compared with reference measurement systems. Results show that this noncontact sensor is characterized by a reduced optical complexity and low cost. It appears to be particularly suitable for use in the analysis of low velocity rough surfaces.
Keywords :
Doppler measurement; correlation methods; displacement measurement; fast Fourier transforms; laser velocimetry; rough surfaces; speckle; velocity measurement; vibration measurement; FFT; LDV; binary correlation; cross-correlation function; fast Fourier transform analysis; illuminated rough surface; laser Doppler vibrometer; laser Doppler vibrometry; low velocity rough surfaces; low vibration frequencies; noncontact speckle-based velocity sensor; sensor sensitivity; speckle noise; speckle-processing algorithms; target displacement; target velocity; Adaptive optics; Algorithm design and analysis; Optical devices; Optical sensors; Rough surfaces; Sensor phenomena and characterization; Speckle; Surface emitting lasers; Surface roughness; Vibrometers;
fLanguage :
English
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9456
Type :
jour
DOI :
10.1109/TIM.2003.821482
Filename :
1259525
Link To Document :
بازگشت