Speckle pattern optimization in laser speckle photometry for non-destructive testing

被引:0
|
作者
Stoykova, Elena [1 ]
Madjarova, Violeta [1 ]
Ivanov, Branimir [1 ]
Viqar, Maryam [1 ]
机构
[1] Bulgarian Acad Sci, Inst Opt Mat & Technol, Acad Georgi Bonchev Str,B1-109, Sofia 1113, Bulgaria
关键词
Speckle; laser speckle photometry; correlation; compression; tensile loading;
D O I
10.1117/12.3022359
中图分类号
TP18 [人工智能理论];
学科分类号
081104 ; 0812 ; 0835 ; 1405 ;
摘要
Dynamics of a speckle pattern formed on the surface of a diffusely reflecting object is a source of valuable information about the changes that occur in the object. Laser speckle photometry extracts relevant information about the object from variations in speckle intensity. Speckle dynamics is visualized by means of an activity map, which renders the 2D distribution of a statistical parameter related to intensity changes. The contrast of the map is crucial for better detection of areas of different activity. Strong fluctuations in the map input data severely degrade the contrast. The main factors affecting the contrast are the processing algorithm and the speckle intensity distribution defined by the parameters of the optical system. The aim of this work is to find the optimal speckle pattern for laser speckle photometry based on the quality assessment of a 2D activity map estimated by correlation-based algorithms with averaging in the temporal or spatial domain. The study included simulation of correlated images with symmetric/asymmetric intensity distribution or at different speckle contrasts. We checked the quality of the obtained map for the case of 8-bit encoded, binary, or JPEG-compressed speckle images. We performed sensitivity evaluation of the method for non-destructive testing of samples under tensile extension.
引用
收藏
页数:9
相关论文
共 50 条
  • [31] Remote laser speckle interferometry: A speckle pattern formation model
    Badalyan, N. P.
    Kiiko, V. V.
    Kislov, V. I.
    Kozov, A. B.
    QUANTUM ELECTRONICS, 2008, 38 (05) : 477 - 481
  • [32] Investigation of speckle pattern dynamics by laser speckle contrast imaging
    Sdobnov, Anton
    Bykov, Alexander
    Popov, Alexey
    Zherebtsov, Evgeny
    MEglinski, Igor
    BIOPHOTONICS: PHOTONIC SOLUTIONS FOR BETTER HEALTH CARE VI, 2018, 10685
  • [33] The pattern recognition of non-destructive testing based on HMM
    Zhang, DF
    Zeng, Y
    Zhou, XJ
    Cheng, YD
    PROCEEDINGS OF THE 4TH WORLD CONGRESS ON INTELLIGENT CONTROL AND AUTOMATION, VOLS 1-4, 2002, : 2198 - 2202
  • [34] Acoustic Pattern Recognition for Non-Destructive Testing.
    Tschoepe, Constanze
    Wolff, Matthias
    Hoffmann, Ruediger
    MATERIALS TESTING, 2009, 51 (10) : 701 - 704
  • [35] NON-DESTRUCTIVE TESTING
    DOTTER, CT
    CIRCULATION, 1958, 18 (02) : 161 - 164
  • [36] NON-DESTRUCTIVE TESTING
    BLY, JH
    OCONNOR, DT
    PROCEEDINGS-AMERICAN SOCIETY FOR TESTING AND MATERIALS, 1953, 53 : 534 - 535
  • [37] NON-DESTRUCTIVE TESTING
    BLY, JH
    PROCEEDINGS-AMERICAN SOCIETY FOR TESTING AND MATERIALS, 1951, 51 : 486 - 487
  • [38] Non-destructive evaluation of separation and void defect of a pneumatic tire by speckle shearing interferometry
    Kim, K
    Kang, KS
    Jung, HC
    Ko, N
    KSME INTERNATIONAL JOURNAL, 2004, 18 (09): : 1493 - 1499
  • [39] Non-destructive testing
    Aubele, Mark
    Keown, Phil
    MATERIALS WORLD, 2008, 16 (04) : 42 - +
  • [40] NON-DESTRUCTIVE TESTING
    BLY, JH
    PROCEEDINGS-AMERICAN SOCIETY FOR TESTING AND MATERIALS, 1950, 50 : 495 - 496