DOI: 10.17586/1023-5086-2018-85-06-53-57
УДК: 681.78
Test stand to evaluate the possibility of using visible-light photodetector arrays as a part of active pulsed observation devices
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Publication in Journal of Optical Technology
Алантьев Д.В., Голицын А.А., Голицын А.В., Сейфи Н.А. Стенд для исследования возможности использования матричных фотоприёмников видимого диапазона в составе активно-импульсных приборов наблюдения // Оптический журнал. 2018. Т. 85. № 6. С. 53–57. http://doi.org/10.17586/1023-5086-2018-85-06-53-57
Alantiev D.V., Golitsyn A.A., Golitsyn A.V., Seyfi N.A. [in Russian] // Opticheskii Zhurnal. 2018. V. 85. № 6. P. 53–57. http://doi.org/10.17586/1023-5086-2018-85-06-53-57
D. V. Alant’ev, A. A. Golitsyn, A. V. Golitsyn, and N. A. Seĭfi, "Test stand to evaluate the possibility of using visible-light photodetector arrays as a part of active pulsed observation devices," Journal of Optical Technology. 85(6), 355-358 (2018). https://doi.org/10.1364/JOT.85.000355
We developed a device and test stand to investigate the capabilities of charge-coupled-device- (CCD-) array and complementary-metal–oxide-semiconductor photodetectors. The test stand made it possible to control the photodetectors using arbitrary waveforms, synchronize the photodetectors with a laser emitter, and receive images from the photodetectors and transmit them to external devices. Experiments performed on the test stand showed that interline transfer CCD photodetectors can be used as a part of active pulsed observation devices without using an electro-optical converter as a shutter.
active pulsed devices, CCD photodetector, laser emitter, device and test stand, reconfigurable system
OCIS codes: 040.1490, 110.0115
References:1. V. A. Gorobets, V. V. Kabanov, V. P. Kabashnikov, B. F. Kuntsevich, N. S. Metelskaya, and D. V. Shabrov, “Active pulsed vision systems and algorithms for determining distances to objects,” J. Appl. Spectrosc. 81(2), 283–291 (2014).
2. A. V. Golitsyn, P. V. Zhuravlev, G. E. Zhurov, A. V. Koryakin, A. P. Chikhonadsky, V. B. Shlishevsky, and T. V. Yashina, “Pseudo-binocular multichannel device for detection of potential threats,” Izv. Vyssh. Uchebn. Zaved., Priborostr. 52(6), 27–34 (2009).
3. N. I. Mishchenko, I. N. Pustynskiı˘, and V. V. Kapustin, “Methods and means to improve the efficiency of active pulsed television and computer systems for monitoring and security of objects,” Dokl. Tomsk. Gos. Univ. Sist. Upr. Radioélektron. 19(3), 42–46 (2016).
4. G. E. Zhurov and M. Yu. Tsivinskiı˘, “Universal modular reconfigurable system for the processing of signals of thermal-vision and multichannel devices in real time,” Izv. Vyssh. Uchebn. Zaved., Priborostr. 57(5), 44–46 (2014).
5. A. A. Golitsyn and N. A. Seı˘fi, “Electronic digital image processing module for round-the-clock surveillance device,” Vestn. Novosib. Gos. Univ. Ser. Fiz. 7(3), 129–136 (2012).
6. A. A. Golitsyn, A. V. Golitsyn, G. E. Zhurov, M. Yu. Tsivinskiı˘, S. D. Chiburun, and T. V. Yashina, “Thermal-vision channel based on an uncooled array of microbolometers,” J. Opt. Technol. 80(6), 335–338 (2013) [Opt. Zh. 80(6), 8–13 (2013)].
7. A. A. Golitsyn, “Software package for control of thermal-vision and multichannel surveillance devices through a USB 2.0 bus,” Aprobatsiya 11(38), 10–12 (2015).
8. A. A. Golitsyn and N. A. Seı˘fi, “Method of active pulsed vision,” Application for invention of the Russian Federation No. 2017100286, January 9, 2017; patent decision: December 12, 2017.
9. A. A. Golitsyn and N. A. Seı˘fi, “Active pulsed method of observation using an interline transfer CCD photodetector,” Izv. Vyssh. Uchebn. Zaved., Priborostr. 60(11), 1040–1047 (2017).