DocumentCode :
68978
Title :
Self-Mixing Laser Sensor for Large Displacements: Signal Recovery in the Presence of Speckle
Author :
Zabit, Usman ; Bernal, Olivier Daniel ; Bosch, Thierry
Author_Institution :
LAAS, Toulouse, France
Volume :
13
Issue :
2
fYear :
2013
fDate :
Feb. 2013
Firstpage :
824
Lastpage :
831
Abstract :
Laser self-mixing (SM) sensors are successfully used to measure displacement in the absence of speckle. However, speckle deforms the SM signal rendering it unusable for standard displacement extraction techniques. This article proposes a new signal-processing technique, based on tracking the signal envelope, to remedy this problem. Algorithm was successfully employed to measure long-range displacements (25 mm), in the presence of speckle and the lateral movement of the target, both causing severe corruption of the SM signal. It therefore enabled the use of the sensor on noncooperative targets without the need for sensor positioning and/or alignment. The results have been obtained for SM signals in which the envelope amplitude is varied by a factor of 28, without the loss of interferometric fringes. The use of this technique effectively removes the need for opto/electro-mechanical components traditionally used to measure long-range displacement in the presence of speckle.
Keywords :
displacement measurement; measurement by laser beam; optical sensors; optical signal detection; speckle; SM signal rendering; displacement extraction technique; displacement measurement; interferometric fringes; opto-electromechanical component; self-mixing laser sensor; signal envelope tracking; signal processing; signal recovery; speckle; Displacement measurement; Fluctuations; Laser beams; Measurement by laser beam; Signal processing; Speckle; Surface emitting lasers; Displacement measurement; envelope extraction; self-mixing interferometry; speckle;
fLanguage :
English
Journal_Title :
Sensors Journal, IEEE
Publisher :
ieee
ISSN :
1530-437X
Type :
jour
DOI :
10.1109/JSEN.2012.2227718
Filename :
6353890
Link To Document :
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