Simulation computer model for virtual research of optoelectronic measuring systems

Мұқаба

Дәйексөз келтіру

Толық мәтін

Аннотация

The paper considers a simulation computer model of an optoelectronic system for measuring the point objects coordinates. The model allows optimal coordination of the system links parameters in order to minimize the measurement error. The method of multiple statistical tests which allows accumulating the results of single computational experiments for each specific measurement event with a unique random distribution of links parameters and characteristics, and then carrying out statistical processing of the accumulated results is the main method of computer simulation. As a result of multiple analyses, multi-parameter functional dependencies that provide optimal coordination of parameters controlled by the designer or operator according to the criterion of the resulting measurement error minimizing are realized. The article presents the results of evaluating modeling parameters that reduce the measurement error. It is relevant to apply this method when using the same measuring system in different operating conditions, for different measured objects and when performing various functional tasks since it allows adapting the system for a specific application. The model presented in the article can be concretized for the purpose of evaluating and multi-parameter optimization of particular object parameters, as well as for developing a virtual measuring stand on the basis of the model and its modifications.

Авторлар туралы

Yevgeny Gritskevich

Siberian State University of Geosystems and Technologies

Email: kaf.ib@ssga.ru

Cand. Sc., Associate Professor

Ресей, 10, Plakhotnogo St., Novosibirsk, 630108

Polina Zviagintcheva

Siberian State University of Geosystems and Technologies

Хат алмасуға жауапты Автор.
Email: polinasgugit@mail.ru

Senior Lecturer Department of Information Security

Ресей, 10, Plakhotnogo St., Novosibirsk, 630108

Diana Makarova

Siberian State University of Geosystems and Technologies

Email: kaf.ib@ssga.ru

Senior Lecturer Department of Information Security

Ресей, 10, Plakhotnogo St., Novosibirsk, 630108

Marina Egorenko

Siberian State University of Geosystems and Technologies

Email: e_m_p@mail.ru

Senior Lecturer Department of Photonics and Device Engineering

Ресей, 10, Plakhotnogo St., Novosibirsk, 630108

Vyacheslav Zolotarev

Reshetnev Siberian State University of Science and Technologies

Email: amida.2@yandex.ru

Cand. Sc., Associate Professor, Head of Department of Information Technologies Security

Ресей, 31, Krasnoyarskiy rabochiy Av., Krasnoyarsk, 660037

Әдебиет тізімі

  1. Malinin V. V. Modelirovanie i optimizatsiya optiko-elektronnykh priborov s fotopriemnymi matritsami [Modeling and optimization of optoelectronic devices with photodetector arrays]. Novosibirsk, Nauka Publ., 2005, 256 p.
  2. Zheltko Ch. N., Pastukhov M. A., Gura D. A., Shevchenko G. G. [Evaluation of the error in measuring horizontal angles during the geodetic support of high-rise construction]. Regional'nye aspekty razvitiya nauki i obrazovaniya v oblasti arkhitektury, stroitel'stva, zemleustroystva i kadastrov v nachale III tysyacheletiya. Nauchnye chteniya pamyati professora V. B. Fedosenko [Regional aspects of the development of science and education in the field of architecture, construction, land management and cadastre at the beginning of the III Millennium. Scientific readings in memory of Professor V. B. Fedosenko]. Komsomol'sk-na-Amure, Komsomol'skiy-na-Amure gosudarstvennyy tekhnicheskiy universitet Publ., 2015, P. 389–394 (In Russ.).
  3. Belokonev V. M., Itigin A. M.-Sh., Shlishevskiy V. B. [Theoretical errors in determining the polar coordinates of luminous objects using a two-channel optoelectronic system with matrix photodetectors]. Opticheskiy zhurnal. 2003, No. 7, P. 91–92 (In Russ.).
  4. Jain A. K., Flynn P., Ross A. A. Handbook of biometrics. Springer. 2008, 565 p.
  5. Bukreev V. I., Dmitrieva M. N., Ivankin I. R., Eventave Yu. M. [Estimation of the position and velocity of the image center of the light spot by the charge distribution in the matrix CCD-structure]. Tekhnika sredstv svyazi. Cer. Tekhnika televideniya. 1990, No. 2, P. 71–77 (In Russ.).
  6. Gusarov V. F. [Influence of characteristics of matrix photodetectors on the accuracy of optoelectronic system with optical equal-signal zone]. Sb. trudov V Vserossiyskogo kongressa molodykh uchenykh [All-Russian Congress of young scientists]. 2016, Vol. 1, P. 124–128 (In Russ.).
  7. Belokonev V. M., Itigin A. M.-Sh., Prudnikov N. V., Shlishevskiy V. B. [The concept of building an optoelectronic system for automatic determination of target coordinates by a light flash]. Izv. vuzov. Priborostroenie. 2003, No. 3, P. 64–66 (In Russ.).
  8. Kuchkov D. V., Konyakhin I. A., Usik A. A. [Iterative algorithm for determining the coordinates of point emitters images]. Opticheskiy zhurnal. 2009, Vol. 76, No. 1, P. 43–45 (In Russ.).
  9. Fisenko M. G., Ezhova K. V., Molev F. V. [Simulation of the image registered by multi-element optical receivers]. Izv. vuzov. Priborostroenie. 2012, Vol. 55, No. 4, P. 73–74 (In Russ.).
  10. Gritskevich E. V. [Minimization of the measurement error of opto-electronic coordinate sensor]. Datchiki i sistemy. 2012, No. 4, P. 18–20 (In Russ.).
  11. Gritskevich E. V., Zvyagintseva P. A. ISCOL [ISCOL]. Patent RF, No. 2011610964, 2011.
  12. Gritskevich E., Zvyagintseva P., Sidorov L. Virtual Testing of Electro-optical Systems for Measuring Angles by Using Computer Simulation Model. Proceedings of the 18th International Conference of Young Specialists on Micro / Nanotechnologies and Electron Devices EDM 2017. Erlagol, Altai Republic 29 June – 3 July, 2017. Р. 353–356. doi: 10.1109/EDM.2017.7981772.
  13. Bezuglov D. A., Yukhnov V. I., Reshetnikova I. V., Belichenko M. A. [Methods for determining the motion parameters of a point source of optical radiation]. Sovremennye problemy nauki i obrazovaniya. 2014, No. 2 (In Russ.). Available at: https://science-education.ru/ru/article/view?id=12712 (accessed 11.02.2019).
  14. Pashkov V. S. [The effect of blurring images on the accuracy of estimates of its coordinates]. Mekhanika, upravlenie i informatika. 2009, No. 1, P. 225–230 (In Russ.).
  15. Bogoslovskiy A. V., Zhigulina I. V., Bogoslovskiy E. A. et al. [Algorithm of compensation of linear shift of the image of the moving object]. DSPA: Voprosy primeneniya tsifrovoy obrabotki signalov. 2016, Vol. 6, No. 4, P. 768–772.

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© Gritskevich Y.V., Zviagintcheva P.A., Makarova D.G., Egorenko M.P., Zolotarev V.V., 2019

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