Detection of regularities in the parameters of the ateb­gabor method for biometric image filtration

The study has developed a new image filtering method based on Ateb-Gabor. The method involves the well-known Gabor filter that helps convert images with clear contours. Therefore, this method is applicable to biometric images where the creation of clear contours is particularly relevant. During Gabo...

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Main Authors: Mariya Nazarkevych, Oleg Riznyk, Volodymyr Samotyy, Ulyana Dzelendzyak
Format: Article
Language:English
Published: PC Technology Center 2019-02-01
Series:Eastern-European Journal of Enterprise Technologies
Subjects:
Online Access:http://journals.uran.ua/eejet/article/view/154862
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spelling doaj-6af43cedec3342bb96a1f2c821d0a5fd2020-11-24T21:40:20ZengPC Technology CenterEastern-European Journal of Enterprise Technologies1729-37741729-40612019-02-0112 (97)576510.15587/1729-4061.2019.154862154862Detection of regularities in the parameters of the ateb­gabor method for biometric image filtrationMariya Nazarkevych0Oleg Riznyk1Volodymyr Samotyy2Ulyana Dzelendzyak3Lviv Polytechnic National University S. Bandery str., 12, Lviv, Ukraine, 79013Lviv Polytechnic National University S. Bandery str., 12, Lviv, Ukraine, 79013Cracow University of Technology Warszawska str., 24, Cracow, Poland, 31-155 Lviv State University of Life Safety Kleparivska str., 35, Lviv, Ukraine, 79007Lviv Polytechnic National University S. Bandery str., 12, Lviv, Ukraine, 79013The study has developed a new image filtering method based on Ateb-Gabor. The method involves the well-known Gabor filter that helps convert images with clear contours. Therefore, this method is applicable to biometric images where the creation of clear contours is particularly relevant. During Gabor filtration, the image is transformed by multiplying the harmonic function by the Gaussian function. Ateb-functions are a generalization of elementary trigonometry and, accordingly, have greater functionality for known harmonic functions. Ateb-Gabor filtering makes it possible to change the intensity of the whole image as well as intensity in certain ranges and thus gives more contrast to certain areas of an image. Ateb-functions are changed by two rational parameters, and this provides flexible control of the filtering. Research has been made on the properties of Ateb-functions as well as the possibility of changing the amplitude and the frequency of alternations when filtering by the Ateb-Gabor. The development of filtration is based on a two-dimensional Ateb-Gabor; its dependencies have been analyzed and appropriate experiments have been performed. The relationship between the frequency and the width of the Ateb-Gabor filter has been determined, which has made it possible to produce filters for finding edges of objects with different frequencies and sizes. Appropriate software has been developed for python filtering without the use of third-party libraries that are associated with image processing. Fingerprints were filtered using the developed Ateb-Gabor filter. The effectiveness of its use is shown to consist in forming more combinations of processed images. The results of numerous experiments demonstrate a successful selection of edges in an image based on the parameters of the Ateb-Gabor filter.http://journals.uran.ua/eejet/article/view/154862gabor filterateb functionsbiometric systemimage processingdeflection of the gaussian kernel
collection DOAJ
language English
format Article
sources DOAJ
author Mariya Nazarkevych
Oleg Riznyk
Volodymyr Samotyy
Ulyana Dzelendzyak
spellingShingle Mariya Nazarkevych
Oleg Riznyk
Volodymyr Samotyy
Ulyana Dzelendzyak
Detection of regularities in the parameters of the ateb­gabor method for biometric image filtration
Eastern-European Journal of Enterprise Technologies
gabor filter
ateb functions
biometric system
image processing
deflection of the gaussian kernel
author_facet Mariya Nazarkevych
Oleg Riznyk
Volodymyr Samotyy
Ulyana Dzelendzyak
author_sort Mariya Nazarkevych
title Detection of regularities in the parameters of the ateb­gabor method for biometric image filtration
title_short Detection of regularities in the parameters of the ateb­gabor method for biometric image filtration
title_full Detection of regularities in the parameters of the ateb­gabor method for biometric image filtration
title_fullStr Detection of regularities in the parameters of the ateb­gabor method for biometric image filtration
title_full_unstemmed Detection of regularities in the parameters of the ateb­gabor method for biometric image filtration
title_sort detection of regularities in the parameters of the ateb­gabor method for biometric image filtration
publisher PC Technology Center
series Eastern-European Journal of Enterprise Technologies
issn 1729-3774
1729-4061
publishDate 2019-02-01
description The study has developed a new image filtering method based on Ateb-Gabor. The method involves the well-known Gabor filter that helps convert images with clear contours. Therefore, this method is applicable to biometric images where the creation of clear contours is particularly relevant. During Gabor filtration, the image is transformed by multiplying the harmonic function by the Gaussian function. Ateb-functions are a generalization of elementary trigonometry and, accordingly, have greater functionality for known harmonic functions. Ateb-Gabor filtering makes it possible to change the intensity of the whole image as well as intensity in certain ranges and thus gives more contrast to certain areas of an image. Ateb-functions are changed by two rational parameters, and this provides flexible control of the filtering. Research has been made on the properties of Ateb-functions as well as the possibility of changing the amplitude and the frequency of alternations when filtering by the Ateb-Gabor. The development of filtration is based on a two-dimensional Ateb-Gabor; its dependencies have been analyzed and appropriate experiments have been performed. The relationship between the frequency and the width of the Ateb-Gabor filter has been determined, which has made it possible to produce filters for finding edges of objects with different frequencies and sizes. Appropriate software has been developed for python filtering without the use of third-party libraries that are associated with image processing. Fingerprints were filtered using the developed Ateb-Gabor filter. The effectiveness of its use is shown to consist in forming more combinations of processed images. The results of numerous experiments demonstrate a successful selection of edges in an image based on the parameters of the Ateb-Gabor filter.
topic gabor filter
ateb functions
biometric system
image processing
deflection of the gaussian kernel
url http://journals.uran.ua/eejet/article/view/154862
work_keys_str_mv AT mariyanazarkevych detectionofregularitiesintheparametersoftheatebgabormethodforbiometricimagefiltration
AT olegriznyk detectionofregularitiesintheparametersoftheatebgabormethodforbiometricimagefiltration
AT volodymyrsamotyy detectionofregularitiesintheparametersoftheatebgabormethodforbiometricimagefiltration
AT ulyanadzelendzyak detectionofregularitiesintheparametersoftheatebgabormethodforbiometricimagefiltration
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