Senzori u tehničkim sredstvima specijalne namene

  • Zoran Milanović
  • Saša Milić Elektrotehnički institut Nikola Tesla
  • Radovan Radovanovic
Ključne reči: sredstva specijalne namene, infracrveno (IC) zračenje, merni sistemi, senzori, detektori

Sažetak


Tehnička sredstva specijalne namene za merenje i nadzor se ubrzano razvijaju sa ciljem unapređenja održive bezbednosti i elektronske zaštite lica i objekata. Ovaj rad, u širem smislu, daje opštu podelu i primenu inteligentnih infracrvenih senzora u tehničkim sredstvima vojske i policije, dok u užem smislu daje metrološki prikaz pametnih mernih senzora, uređaja i sistema, i načine i oblasti njihove primene. U užem smislu, u radu su detaljno analizirani i prikazani sistemi koji koriste termovizijske kamere. Dat je niz primera iz svetske prakse sa ciljem ilustracije i potvrde značaja primene mernih i nadzornih IC sistema.

Reference


  1. G. Webster, H. Eren Measurement, Instrumentation and Sensors Handbook, Taylor & Francis Group, LLC CRC Press is an imprint of Taylor & Francis Group, an Informa business, 2014. [Online]. Available: http://www.ime.cas.cn/icac/learning/learning_5/202107/P020210721600385915735.pdf. [Accessed October 31, 2021].

  2. Ž. Blagojević, Alarmni sistemi, Fakultet zaštite na radu, Niš, 2011.

  3. Ž. Blagojević, R. Radovanović, „Uloga senzora u bezbednosnim sistemima (zaštite, alarmnim sistemima)“, 2010. [Online]. Available:
    https://www.researchgate.net/publication/346659459_Uloga_senzora_u_bezbednosnim_sistemima_zastite_alarmnim_sistemima [Accessed October 31, 2021].

  4. S D. Milić, Book Chapter: "Fuzzy-Decision Algorithms for Cyber Security Analysis of Advanced SCADA and Remote Monitoring Systems", in book: "Cyber Security of Industrial Control Systems in the Future Internet Environment", IGI Global, USA, Editors: Mirjana D. Stojanović and Slavica V. Boštjančić Rakas, ISSN: 1948-9730, DOI: 10.4018/978-1-7998-2910-2.ch007, 2020, USA, pp. 131-155.

  5. D. Milić, B. M. Babić, "Towards the Future - Upgrading Existing Remote Monitoring Concepts to IIoT Concepts", IEEE Internet of Things Journal, Electronic ISSN: 2327-4662, DOI: 10.1109/JIOT.2020.2999196, Vol. 7, Issue 12, December 2020, pp. 11693-11700.

  6. D. Milić, S. Veinović, M. Ponjavić: "Industrial Internet of Things (IIoT) – Strategies and Concepts", XIX International Symposium Infoteh-Jahorina 2020, Proc., Vol.19, KST-4, Jahorina, Republic of Srpska, March 18-20, 2020, pp. 81-85.

  7. D. Milić, D. Misović, "Detekcija kvarova i donošenje odluka na FOG i CLOUD nivoima industrijskog interneta stvari", 19. Simpozijum CIGRE Srbija – Upravljanje, telekomunikacije i zaštita u elektroenergetskom sistemu - STK C2, D2 i B5, Videokonferencija, Zbornik radova ISBN: 978-86-82317-86-9, Oznaka rada R D2 11, Strane: 1-8, 21 - 23. oktobar 2020, Srbija.

  8. Milić, G. Stojadinović, N. Tomić: "Prilagođenje postojećih sistema daljinskog nadzora IIoT konceptima sa hijerarhijski definisanim nivoima obrade podataka", CIGRE - Srbija 35. savetovanje, Zbornik radova, ISBN: 978-86-82317-84-5, rad R D2 - 09, 03 - 08. oktobar 2021. godine, Zlatibor, Srbija.

  9. M. White, „A sensor classification scheme“, IEEE Trans. Ultrason. Ferroelectr. Freq. Control. 1987, 34, 124–126.

  10. Naresh, N. Lee, “A Review on Biosensors and Recent Development of Nanostructured Materials-Enabled Biosensors”, MDPI, 2021. [Online]. Available: https://www.mdpi.com/1424-8220/21/4/1109/htm [Accessed October 31, 2021].

  11. ISO 20473:2007 – Optics and photonics – Spectral bands

  12. Radovanović, Tehnička sredstva policije, Kriminalističko policijska akademija, Beograd, 2015.

  13. Popović, Senzori i merenja, Zavod za udžbenike i nastavna sredstva Srpsko Sarajevo, 2004.

  14. Max J. Riedl, Optical Design Fundamentals for Infrared Systems, Second Edition, SPIE, 2001.

  15. HAMAMATSU PHOTONICS K.K., Characteristics and use of infrared detectors, Japan, 2011.

  16. K. Dhar, R. Dat, A. K. Sood, „Advances in Infrared Detector Array Technology“ 2013. https://www.intechopen.com/chapters/38815

  17. Milić, „Daljinski temperaturni nadzor polova rotora hidrogeneratora“, Zbornik radova, Elektrotehnički institut Nikola Tesla, 2015. http://www.zbornik-eint.org/wp-content/uploads/2015/04/24Daljinski-temeperaturni-nadzor-polova-rotora-hidrogeneratora.pdf

  18. Ilić, Elementi automatizacije, Novi Sad, 2019., http://vtsns.edu.rs/wp-content/uploads/2018/11/Elem-autom_Skripta-za-Kol-2019.pdf

  19. Facilities, https://www.facilitiesnet.com/equipmentrentaltools/article/Understanding-the-Three-Types-of-Infrared-Cameras--10652

  20. Science news for students, 2018., https://www.sciencenewsforstudents.org/blog/eureka-lab/heating-search-hidden-weapons

  21. Muchiri, I. L. Ateya, „The Need for Marker-Less Computer Vision Techniques for Human Gait Analysis on Video Surveillance to Detect Concealed Firearms“, International Journal of Computer, 2018.

  22. SCI TECH DAILY, New ultrathin coating uses trickery to hide temperature changes from infrared cameras, 2020. https://scitechdaily.com/new-ultrathin-coating-uses-trickery-to-hide-temperature-changes-from-infrared-cameras/

  23. Heliguy, 2021, https://www.heliguy.com/blogs/posts/five-ways-a-thermal-camera-drone-can-help-you

  24. M. Joss, „Anti-personnel landmine injuries: a global epidemic“, 1997.https://pubmed.ncbi.nlm.nih.gov/24441894/

  25. Minesweepers, Facts about landmines, 2017., https://www.landminefree.org/2017/index.php/support/facts-about-landmines

  26. K. S¸endur, B. A. Baertlein, „Techniques for Improving Buried Mine Detection in Thermal IR Imagery“, http://people.ee.duke.edu/~lcarin/DeminingMURI/OSU_SPIE99_Imp_Det_IR.pdf

  27. Infrared Light, https://www.physicscentral.com/explore/action/infraredlight.cfm

  28. Geralyn, Infrared-Based Imaging in Forensics, 2017. https://possibility.teledyneimaging.com/infrared-based-imaging-forensics/

  29. Teledyne FLIR, 2016, How Applying Steam to Blood-Stained Cloth Made Thermal Imaging Possible, https://www.flir.com/discover/rd-science/forensic-investigations-using-thermography-and-steam/

  30. Cardone, A. Merla, “New Frontiers for Applications of Thermal Infrared Imaging Devices: Computational Psychopshysiology in the Neurosciences“, MDPI, 2017.

  31. Infrared Spectroscopy, 2013. https://www2.chemistry.msu.edu/faculty/reusch/virttxtjml/spectrpy/infrared/infrared.htm

  32. M. Richard, P. Massey, Metal Detectors vs. Infrared Thermography to Search for Shell Casings, https://www.newhaven.edu/_resources/documents/academics/surf/past-projects/2015/nicole-richard-poster.pdf

Objavljeno
2021/12/29
Rubrika
Pregledni članak