IMAGE ANALYSIS IN OPTOELECTRONIC SYSTEM WITH CORRELATION MATRIX

Authors

  • Tetiana Borysivna Martyniuk Вінницький національний технічний університет
  • Serhii Vitaliiovych Bohomolov Вінницький національний технічний університет
  • Serhii Maksymovych Fashchilin Вінницький національний технічний університет
  • Yevhenii Serhiiovych Heneralnytskyi Вінницький національний технічний університет

DOI:

https://doi.org/10.31649/1999-9941-2019-46-3-39-46

Keywords:

optoelectronic system, correlation matrix, normalized correlation processing

Abstract

Correlation processing is used effectively with signal/image processing in the field of computer vision and remote sensing from satellites. Therefore, correlation processing is a promising area of ​​image analysis and recognition, as for huge amounts of video information the automation with high-speed image processing is required. The need for high-speed processing of large amounts of optical information, including video signals, requires a comprehensive approach to the input and output of information in a human-friendly way, and the using of powerful digital methods for the correlation processing of digitized images. Therefore, the purpose of this work is to improve the process of digital correlation image processing in optoelectronic system with the ability to visualize the results of correlation processing. This paper presents a structur of optoelectronic system based on a correlation matrix with a toroidal topology of connections between its computational cells. Features of functioning of optoelectronic system are considered and two examples of correlation processing of binary images are given. The reduction of functional load on the computational cells in the correlation matrix allows to use the digital correlation methods, and the conversion of the input optical image into a digital two-dimensional binary, with subsequent presentation of the result of the correlation processing as the optical two-dimensional signal are realized respectively on the integrated analog-to-digital converter and LED matrix. Orientation to the normalized correlation processing allows, first, to obtain a binary correlation relief with a corresponding decrease in the hardware costs of the computational cells of the correlation matrix, and second, to realize the visualization of the binary correlation relief with the using of an LED matrix.

Author Biographies

Tetiana Borysivna Martyniuk, Вінницький національний технічний університет

Doctor of Engineering Sciences, Professor, Department of Computer Engineering

Serhii Vitaliiovych Bohomolov, Вінницький національний технічний університет

candidate of technical sciences Sciences, Associate Professor, Department of Computer Engineering, Vinnitsa National Technical University

Serhii Maksymovych Fashchilin, Вінницький національний технічний університет

Master's Degree in Computer Systems and Automation

Yevhenii Serhiiovych Heneralnytskyi, Вінницький національний технічний університет

Postgraduate student of the Department of Computer Engineering

References

U. Prett, Tsifrovaya obrabotka izobrazheniy, kn. 2. M., Rossiya: Mir, 1982.

E. F. Ochin, Vyichislitelnyie sistemyi obrabotki izobrazheniy. L., Rossiya: Energoatomizdat, 1989.

B. A. Alpatov, P. V. Babayan, O. E. Balashov i A. I. Stepashkin, Metodyi avtomaticheskogo obnaruzheniya i soprovozhdeniya ob'ektov. Obrabotka izobrazheniy i upravlenie. M., Rossiya: Radiotehnika, 2008.

R. Duda i P. Hart, Raspoznavanie obrazov i analiz stsen. M., Rossiya: Mir, 1976.

M. D. Kendal i A. Styuart, Statisticheskie vyivodyi i svyazi. M. , Rossiya: Nauka, 1973.

A.A. Akaev i S.A. Mayorov, Opticheskie metodyi obrabotki informatsii. M., Rossiya : Vyissh. shkola, 1988.

V. I. Kozik, E. S. Nezhevenko, Yu. A. Popov, O. I. Potaturkin i V. G. Sutyagin, «Obrabotka izobrazheniy s ispolzovaniem videoprotsessora i svetodiodnogo korrelyatora», Avtometriya, #3, s. 53-58. 1985.

T. B. Martinyuk, G. L. Lisenko, A. V. Kozhem’yako ta M. I. Gromadskiy, «OsoblivostI realIzatsIYi optoelektronnogo matrichnogo korelyatora», na VII MIzhnar. naukovo-prakt. konf. Nauka I osvIta 2004, DnIpropetrovsk, 2004, s. 14-17.

V. P. Kozhemyako, V. B. Gayda, Yu. F. Kutaev i T. B. Martyinyuk, «Korrelyator», A.s. SSSR G06F 15/336. #1674154 MKI (2005), 30.08.91.

V. P. Kozhemyako, Yu. F. Kutaev, V. B. Gayda i T. B. Martyinyuk, «Korrelyator», A.s. SSSR G06F 15/336. #1730640 MKI (2005), 30.04.92.

[11] T. B. Martinyuk, A. V. Kozhem’yako, M. G. Tarnovskiy i D. O. Sharomov, «RealIzatsIynI modelI optoelektronnogo korelyatora». InformatsIynI tehnologIYi ta komp’yuterna InzhenerIya, 2017. #2 (39), S. 53-59.

T. B. Martinyuk, A. V. Kozhem’yako, I. Yu. Vidmish i D. O. Sharomov, «NormalIzovana korelyatsIyna obrobka dvovimIrnih zobrazhen». InformatsIynI tehnologIYi ta komp’yuterna InzhenerIya. 2016. #3 (37), S. 44-50.

T. B. Martinyuk, O. M. Tarasova ta S. M. FaschIlIn, «NormalIzovana korelyatsIyna obrobka na optoelektronnomu korelyatorI», na shostIy mIzhnar. nauk. - tehn. konf. OptoelektronnI InformatsIynI tehnologIYi FotonIka ODS - 2018, VInnitsya, 2018, s. 27.

T. B. Martinyuk, A. M. Grinchuk ta O.V. KalInIn, «Tsifroviy matrichniy korelyator z toroYidalnoyu topologIEyu zv’yazkIv», VIsnik VPI, #1, s. 45-48. 2001.

R. I. Grushvitskiy, A. H. Mursaev i E.P. Ugryumov, Proektirovanie sistem na mikroshemah programmiruemoy logiki. SPb., Rossiya: BHV-Peterburg, 2002.

T. B.Martinyuk, S. M. FaschIlIn ta B.I. KrukIvskiy, «Korelyator», Patent UkraYini G06F 15/00. #135902 MPK (2008), 25.07.2019.

Downloads

Abstract views: 315

Published

2019-12-16

How to Cite

[1]
T. B. Martyniuk, S. V. Bohomolov, S. M. Fashchilin, and Y. S. Heneralnytskyi, “IMAGE ANALYSIS IN OPTOELECTRONIC SYSTEM WITH CORRELATION MATRIX”, ІТКІ, vol. 46, no. 3, pp. 39–46, Dec. 2019.

Metrics

Downloads

Download data is not yet available.

Most read articles by the same author(s)

1 2 > >>