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Maximisation of signal-to-noise ratio in infrared radiation receivers

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EN
Abstrakty
EN
The paper describes principles minimisation of noise produced in infrared detection systems. Analysis of operating conditions affecting signal to noise ratio (S/N) has been carried out. Also analyses for maximisation of S/N in advanced methods of optical signals detection have been made. Many practical solutions have confirmed theoretical predictions.
Twórcy
autor
  • Institute of Optoelectronics, Military University of Technology, 2 Kaliskiego Str., 00-908 Warsaw, Poland, zbiel@wel.wat.waw.pl
Bibliografia
  • 1. A. Rogalski and J. Piotrowski, "Intrinsic infrared photodetectors," Prog. in Quant. Electr. 12, 87-289, (1988).
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  • 3. E. L. Dereniak and G. D. Boreman, Infrared Detectors and Systems, New York, Wiley, 1996.
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  • 6. Z. Bielecki, "Low noise electronics for IR detectors," Proc. IRS2 , 135-138 (2000).
  • 7. Z. Bielecki, "Optimisation of signal detection systems operating with various IR detectors," 6th Topical Meeting on Education and Training on Optics and Photonics, ETOP'99 P (III)-19, Cancun, Mexico, 40 (1999).
  • 8. A. Rogalski, Infrared Detectors, Amsterdam, Gordon and Breach Science Publishers, 2000.
  • 9. J. S. Ascetta and D. L. Shumaker, The Infrared and Electro-Optical Systems Handbook, Vol. 4, SPIE Optical Engineering Press, Bellingham, 1993.
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  • 12. A. Rogalski, Infrared Photon Detectors, SPIE Optical Engineering Press, Bellingham, 1995.
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  • 18. L. J. Kozłowski, S. A. Cabelli, D. E. Cooper, and K. Vural, "Low background infrared hybrid focal plane array characterisation," SPIE 1946, 199-213 (1993).
  • 19. L. J. Kozłowski, K. Vural, J. Luo, A. Tomasini, T. Liu, and W. E. Kleinhans, "Low-noise infrared and visible focal plane arrays," Opto-Electron. Rev. 7, 259-269 (1999).
  • 20. L. J. Kozłowski, R. B Bailey, S. C. Cabelli, D. E. Cooper, G. McComas, K. Vural, and W. E. Tennant, "640x640 PACE HgCdTe FPA," Proc. SPIE 1735, 163-174 (1992).
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  • 22. L. J. Kozłowski, J. M. Arias, G. M, Williams, K. Vural, D. E. Cooper, S. A. Cabelli, and C. Bruce, "Recent advances in staring hybrid focal plane arrays: comparison of HgCdTe, InGaAs, and GaAs/AlGaAs detector technologies," Proc. SPIE 2274, 93-116 (1994).
  • 23. J. D. Vincent, Fundamentals of Infrared Detector. Operation and Testing, Wiley, New York, 1990.
  • 24. M. I. Skolnik, Radar Handbook, New York, Mc. Graw-Hill Comp., 1990.
  • 25. G. Gaussorgues, La Thermographie Infrarouge, Lavoise, Paris, 1984.
  • 26. M. C. Dudzik, "Electro-optical systems design, analysis, and testing," in The Infrared and Electro-Optical Systems Handbook, Vol. 4, pp. 299-342, SPIE Optical Engineering Press, Bellingham, 1993.
  • 27. C. T. Elliot, D. Day, and D. J. Wilson, "An integrating detector for serial scan thermal imaging," Infrared Phys. 22, 31-42 (1982).
  • 28. Z. Bielecki, "Influence of background radiation on performance of SPRITE detectors," Proc. SPIE 2321, 242-245 (1994).
  • 29. Z. Bielecki, "Analysis of operation conditions of avalanche photodiode on signal to noise ratio," Opto-Electron. Rev. 5, 249-256 (1997).
  • 30. Z. Bielecki. "Photoreceiver with avalanche C-30645 photodiode" IEE Proceedings Optoelectronics, 147, 234-236 (2000).
  • 31. Z. Bielecki, K. Chrzanowski, R. Matyszkiel, T. Piątkowski, and M. Szulim, "Infrared pyrometer for temperature measurernent of objects of both wavelength and time dependent emissivity", Optica Appl. 29, 285-292 (1999).
  • 32. Z. Bielecki, K. Chrzanowski, R. Matyszkiel, T. Piątkowski, and M. Szulim, "Infrared pyrometer for temperature measurernent of objects, emissivity of which depends on wavelength and tim", Quantative Infrared Thermography 4, "Proc. Eurotherm Seminar," 316-321 (1998).
  • 33. Z. Bielecki, "Photoreceiver with popcorn-noise reduction systems," 26th International Conference on Infrared and Millimeter Waves, 10-14 September, Toulouse, France, 72-73 (2001).
  • 34. Z. Bielecki, "Elimination of popcorn noise in receivers with pyroelectric detectors". International Conference Infrared Sensors & Systems, Erfurt, Proc. IRS2, 173-177 (2002).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BWA2-0006-0096
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