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Optical Design of Thermal Imaging Camera in MWIR Band (3—5μm)

Year 2017, Volume: 1 Issue: 1, 31 - 34, 28.12.2017

Abstract

The aim of this study is to create
an optical design of a thermal imager working on the platforms which are
lighter (zeppelin, balloon, etc.) or heavier (unmanned aerial vehicles, etc)
than air in the high altitude. An
infrared optical system has been designed in this paper for work in mid
wavelength infrared region (MWIR) 3— 4 μm.  The design of optical camera which is a kind
of Cassegrian is performed by being used Zemax optical design software. The
optical performance analysis of the design is also
discussed. This system can be applied in many civilian
applications, and military applications. 




References

  • [1] D’Oliveira F. A., De Melo F. C. L., Devezas T. C., High-Altitude Platforms -Present Situation and Technology Trends, Journal Of Aerospace Technology And Management, 2016, 8(3), 24
  • [2] Widiawan AK, Tafazolli R (2006) High Altitude Platform Station (HAPS): a review of new infrastructure development for future wireless communications. Wireless Pers Comm 42(3):387-404. doi: 10.1007/s11277-006-9184-9
  • [3] Oelrich Brian D., Dr. Craig Underwood, Low Cost Thermal IR Imager for an Earth Observation Micro-satellite, 2004
  • [4] Oelrich Brian D., The Design and Characterization of a Low-cost Microsatellite Thermal IR Imager Based on COTS Technology, PhD thesis, University of Surrey, 2005
  • [5] Robert E. Fischer, Biljana Tadic-Galeb &Paul R. Yoder "Optical System Design", 2nd Ed, (McGraw-Hill, New York), [2008].
  • [6] Driggers Ronald G.,Cox Paul ,Edwards Timothy, Introduction to Infrared and Electro-Optical Systems, Artech House Optoelectronics Library,1998
  • [7] ZEMAX Optical Design Program, Users Guide, ZEMAX Development Corporation, [9 June 2009].
  • [8] Fisher,Robert E., Biljana Tadic-Galep, Optical System Design, SPIE Press-McGrawhill, 2000
  • [9] Aboobida Y.A. Hajnoor, Faiz M.B. Elshafia, Mubarak M. Ahmed, “IR optical system design of uncooled thermal imaging camera in long band (8—12μm)”, IOSR-JAP, Vol.6 Issue 5, Ver 3 PP 32-40
Year 2017, Volume: 1 Issue: 1, 31 - 34, 28.12.2017

Abstract

References

  • [1] D’Oliveira F. A., De Melo F. C. L., Devezas T. C., High-Altitude Platforms -Present Situation and Technology Trends, Journal Of Aerospace Technology And Management, 2016, 8(3), 24
  • [2] Widiawan AK, Tafazolli R (2006) High Altitude Platform Station (HAPS): a review of new infrastructure development for future wireless communications. Wireless Pers Comm 42(3):387-404. doi: 10.1007/s11277-006-9184-9
  • [3] Oelrich Brian D., Dr. Craig Underwood, Low Cost Thermal IR Imager for an Earth Observation Micro-satellite, 2004
  • [4] Oelrich Brian D., The Design and Characterization of a Low-cost Microsatellite Thermal IR Imager Based on COTS Technology, PhD thesis, University of Surrey, 2005
  • [5] Robert E. Fischer, Biljana Tadic-Galeb &Paul R. Yoder "Optical System Design", 2nd Ed, (McGraw-Hill, New York), [2008].
  • [6] Driggers Ronald G.,Cox Paul ,Edwards Timothy, Introduction to Infrared and Electro-Optical Systems, Artech House Optoelectronics Library,1998
  • [7] ZEMAX Optical Design Program, Users Guide, ZEMAX Development Corporation, [9 June 2009].
  • [8] Fisher,Robert E., Biljana Tadic-Galep, Optical System Design, SPIE Press-McGrawhill, 2000
  • [9] Aboobida Y.A. Hajnoor, Faiz M.B. Elshafia, Mubarak M. Ahmed, “IR optical system design of uncooled thermal imaging camera in long band (8—12μm)”, IOSR-JAP, Vol.6 Issue 5, Ver 3 PP 32-40
There are 9 citations in total.

Details

Subjects Metrology, Applied and Industrial Physics
Journal Section Research Articles
Authors

Elif Kara

Publication Date December 28, 2017
Published in Issue Year 2017 Volume: 1 Issue: 1

Cite

APA Kara, E. (2017). Optical Design of Thermal Imaging Camera in MWIR Band (3—5μm). Acta Materialia Turcica, 1(1), 31-34.
AMA Kara E. Optical Design of Thermal Imaging Camera in MWIR Band (3—5μm). ACTAMAT. December 2017;1(1):31-34.
Chicago Kara, Elif. “Optical Design of Thermal Imaging Camera in MWIR Band (3—5μm)”. Acta Materialia Turcica 1, no. 1 (December 2017): 31-34.
EndNote Kara E (December 1, 2017) Optical Design of Thermal Imaging Camera in MWIR Band (3—5μm). Acta Materialia Turcica 1 1 31–34.
IEEE E. Kara, “Optical Design of Thermal Imaging Camera in MWIR Band (3—5μm)”, ACTAMAT, vol. 1, no. 1, pp. 31–34, 2017.
ISNAD Kara, Elif. “Optical Design of Thermal Imaging Camera in MWIR Band (3—5μm)”. Acta Materialia Turcica 1/1 (December 2017), 31-34.
JAMA Kara E. Optical Design of Thermal Imaging Camera in MWIR Band (3—5μm). ACTAMAT. 2017;1:31–34.
MLA Kara, Elif. “Optical Design of Thermal Imaging Camera in MWIR Band (3—5μm)”. Acta Materialia Turcica, vol. 1, no. 1, 2017, pp. 31-34.
Vancouver Kara E. Optical Design of Thermal Imaging Camera in MWIR Band (3—5μm). ACTAMAT. 2017;1(1):31-4.