Displacement and Illumination Levels Effect on Short-distance Measurement Errors of Using a Camera

Using a camera for measurement reading is simplified through the incorporation of computer vision application. The variations in the environment’s setting, however, may constitute to the occurrence of measurement errors. A study investigated the significant effect of changing the camera-to-lens disp...

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Bibliographic Details
Main Authors: Eduardo D. Piedad Jr., Ricky B. Villeta
Format: Article
Language:English
Published: Center for Policy, Research and Development Studies 2016-06-01
Series:Recoletos Multidisciplinary Research Journal
Subjects:
Online Access:https://rmrj.usjr.edu.ph/rmrj/index.php/RMRJ/article/view/199
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spelling doaj-03098ddb88b94a16b76567e21f1d2c882021-05-15T01:52:02ZengCenter for Policy, Research and Development StudiesRecoletos Multidisciplinary Research Journal2423-13982408-37552016-06-0141https://doi.org/10.32871/rmrj1604.01.06Displacement and Illumination Levels Effect on Short-distance Measurement Errors of Using a CameraEduardo D. Piedad Jr.0Ricky B. Villeta1University of San Jose-RecoletosUniversity of San Jose-RecoletosUsing a camera for measurement reading is simplified through the incorporation of computer vision application. The variations in the environment’s setting, however, may constitute to the occurrence of measurement errors. A study investigated the significant effect of changing the camera-to-lens displacements and the variations of the illumination level on the short-distance measurement reading. This is performed initially by developing an actual setup calibrated though the comparison with the hypothesized values. Then, an experiment on this calibrated setup generates the measurement results of varying the displacement positions and the illumination levels. Through descriptive and comparative statistical analysis, there is evidence that the variations of the displacement alone do not significantly change the measurement results. Similarly, the variations in the illumination levels do not also constitute significant changes on the measurement results. Hence, each of the variables bears no contribution on the occurrence of the measurement error of using camera. It is further confirmed through the two way analysis of variance that there is no significant difference on the displacement positions and illumination levels, and on their interactions. These results verified that a camera can be used as a short-distance measurement tool adequately regardless on the object-to-lens displacement positions and on the illumination levels.https://rmrj.usjr.edu.ph/rmrj/index.php/RMRJ/article/view/199short-distance measurement errorcamera-to-lens displacementilluminationcomputer visioncameradescriptive and comparative analysis
collection DOAJ
language English
format Article
sources DOAJ
author Eduardo D. Piedad Jr.
Ricky B. Villeta
spellingShingle Eduardo D. Piedad Jr.
Ricky B. Villeta
Displacement and Illumination Levels Effect on Short-distance Measurement Errors of Using a Camera
Recoletos Multidisciplinary Research Journal
short-distance measurement error
camera-to-lens displacement
illumination
computer vision
camera
descriptive and comparative analysis
author_facet Eduardo D. Piedad Jr.
Ricky B. Villeta
author_sort Eduardo D. Piedad Jr.
title Displacement and Illumination Levels Effect on Short-distance Measurement Errors of Using a Camera
title_short Displacement and Illumination Levels Effect on Short-distance Measurement Errors of Using a Camera
title_full Displacement and Illumination Levels Effect on Short-distance Measurement Errors of Using a Camera
title_fullStr Displacement and Illumination Levels Effect on Short-distance Measurement Errors of Using a Camera
title_full_unstemmed Displacement and Illumination Levels Effect on Short-distance Measurement Errors of Using a Camera
title_sort displacement and illumination levels effect on short-distance measurement errors of using a camera
publisher Center for Policy, Research and Development Studies
series Recoletos Multidisciplinary Research Journal
issn 2423-1398
2408-3755
publishDate 2016-06-01
description Using a camera for measurement reading is simplified through the incorporation of computer vision application. The variations in the environment’s setting, however, may constitute to the occurrence of measurement errors. A study investigated the significant effect of changing the camera-to-lens displacements and the variations of the illumination level on the short-distance measurement reading. This is performed initially by developing an actual setup calibrated though the comparison with the hypothesized values. Then, an experiment on this calibrated setup generates the measurement results of varying the displacement positions and the illumination levels. Through descriptive and comparative statistical analysis, there is evidence that the variations of the displacement alone do not significantly change the measurement results. Similarly, the variations in the illumination levels do not also constitute significant changes on the measurement results. Hence, each of the variables bears no contribution on the occurrence of the measurement error of using camera. It is further confirmed through the two way analysis of variance that there is no significant difference on the displacement positions and illumination levels, and on their interactions. These results verified that a camera can be used as a short-distance measurement tool adequately regardless on the object-to-lens displacement positions and on the illumination levels.
topic short-distance measurement error
camera-to-lens displacement
illumination
computer vision
camera
descriptive and comparative analysis
url https://rmrj.usjr.edu.ph/rmrj/index.php/RMRJ/article/view/199
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