A New Pattern Quality Assessment Criterion and Defocusing Degree Determination of Laser Speckle Correlation Method

The laser speckle correlation method has found widespread application for obtaining information from vibrating objects. However, the resolution and accuracy of the laser speckle correlation method as they relate to the defocusing degree have not been analyzed sufficiently. Furthermore, the possible...

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Main Authors: Wenxin Hu, Zhipeng Sheng, Keyu Yan, Hong Miao, Yu Fu
Format: Article
Language:English
Published: MDPI AG 2021-07-01
Series:Sensors
Subjects:
Online Access:https://www.mdpi.com/1424-8220/21/14/4728
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spelling doaj-41b68760723e4862bfb569c3f91212712021-07-23T14:05:30ZengMDPI AGSensors1424-82202021-07-01214728472810.3390/s21144728A New Pattern Quality Assessment Criterion and Defocusing Degree Determination of Laser Speckle Correlation MethodWenxin Hu0Zhipeng Sheng1Keyu Yan2Hong Miao3Yu Fu4College of Physics and Optoelectronic Engineering, Shenzhen University, 3688 Nanhai Avenue, Shenzhen 518060, ChinaCollege of Physics and Optoelectronic Engineering, Shenzhen University, 3688 Nanhai Avenue, Shenzhen 518060, ChinaCollege of Physics and Optoelectronic Engineering, Shenzhen University, 3688 Nanhai Avenue, Shenzhen 518060, ChinaCAS Key Laboratory of Mechanical Behavior and Design of Materials, Department of Modern Mechanics, University of Science and Technology of China, Hefei 230027, ChinaCollege of Physics and Optoelectronic Engineering, Shenzhen University, 3688 Nanhai Avenue, Shenzhen 518060, ChinaThe laser speckle correlation method has found widespread application for obtaining information from vibrating objects. However, the resolution and accuracy of the laser speckle correlation method as they relate to the defocusing degree have not been analyzed sufficiently. Furthermore, the possible methods for speckle pattern quality assessment and enhancement have not been studied. In this study, the resolution and accuracy of the laser speckle correlation method are analyzed, and it is found that they are affected by the defocusing degree and speckle pattern quality, respectively. A new speckle pattern quality criterion combining the mean intensity gradient and frequency spectrum was proposed, called CMZ. The quality of the speckle pattern is higher when the CMZ is closer to zero. The proposed criterion was verified by simulated speckle patterns and real speckle patterns with different speckle sizes, densities, and gray contrasts. In the experimental setup stage, a suitable defocusing degree can be selected based on the resolution requirement and optimal speckle size, and other experimental parameters can be determined according to the CMZ criterion. Rotation and vibration experiments verified the effectiveness of the laser speckle correlation method and confirmed the reliability of the experiment preparation based on proposed CMZ criterion.https://www.mdpi.com/1424-8220/21/14/4728laser speckle correlationdefocusing degreespeckle pattern quality criterionvibration measurementrotation measurement
collection DOAJ
language English
format Article
sources DOAJ
author Wenxin Hu
Zhipeng Sheng
Keyu Yan
Hong Miao
Yu Fu
spellingShingle Wenxin Hu
Zhipeng Sheng
Keyu Yan
Hong Miao
Yu Fu
A New Pattern Quality Assessment Criterion and Defocusing Degree Determination of Laser Speckle Correlation Method
Sensors
laser speckle correlation
defocusing degree
speckle pattern quality criterion
vibration measurement
rotation measurement
author_facet Wenxin Hu
Zhipeng Sheng
Keyu Yan
Hong Miao
Yu Fu
author_sort Wenxin Hu
title A New Pattern Quality Assessment Criterion and Defocusing Degree Determination of Laser Speckle Correlation Method
title_short A New Pattern Quality Assessment Criterion and Defocusing Degree Determination of Laser Speckle Correlation Method
title_full A New Pattern Quality Assessment Criterion and Defocusing Degree Determination of Laser Speckle Correlation Method
title_fullStr A New Pattern Quality Assessment Criterion and Defocusing Degree Determination of Laser Speckle Correlation Method
title_full_unstemmed A New Pattern Quality Assessment Criterion and Defocusing Degree Determination of Laser Speckle Correlation Method
title_sort new pattern quality assessment criterion and defocusing degree determination of laser speckle correlation method
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2021-07-01
description The laser speckle correlation method has found widespread application for obtaining information from vibrating objects. However, the resolution and accuracy of the laser speckle correlation method as they relate to the defocusing degree have not been analyzed sufficiently. Furthermore, the possible methods for speckle pattern quality assessment and enhancement have not been studied. In this study, the resolution and accuracy of the laser speckle correlation method are analyzed, and it is found that they are affected by the defocusing degree and speckle pattern quality, respectively. A new speckle pattern quality criterion combining the mean intensity gradient and frequency spectrum was proposed, called CMZ. The quality of the speckle pattern is higher when the CMZ is closer to zero. The proposed criterion was verified by simulated speckle patterns and real speckle patterns with different speckle sizes, densities, and gray contrasts. In the experimental setup stage, a suitable defocusing degree can be selected based on the resolution requirement and optimal speckle size, and other experimental parameters can be determined according to the CMZ criterion. Rotation and vibration experiments verified the effectiveness of the laser speckle correlation method and confirmed the reliability of the experiment preparation based on proposed CMZ criterion.
topic laser speckle correlation
defocusing degree
speckle pattern quality criterion
vibration measurement
rotation measurement
url https://www.mdpi.com/1424-8220/21/14/4728
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