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Passive Remote Chemical Detection of SF6 Clouds in the Atmosphere by FTIR

수동형 FTIR 원격화학 탐지기를 이용한 SF6 오염운의 실시간 탐지

  • Chong, Eugene (The 5th Research and Development Institute, Agency for Defense Development) ;
  • Park, Byeonghwang (The 5th Research and Development Institute, Agency for Defense Development) ;
  • Kim, Ju Hyun (The 5th Research and Development Institute, Agency for Defense Development)
  • 정유진 (국방과학연구소 제5기술연구본부) ;
  • 박병황 (국방과학연구소 제5기술연구본부) ;
  • 김주현 (국방과학연구소 제5기술연구본부)
  • Received : 2013.10.05
  • Accepted : 2014.01.17
  • Published : 2014.02.05

Abstract

Brightness temperature spectra acquired from FTIR(Fourier Transform Infrared)-SCADS (Standoff Chemical Agent Detection System) could be available for detection and identification of the chemical agents and pollutants from different background. IR spectrum range of 770 to 1350 $cm^{-1}$ is corresponding to "atmospheric window". A 2-dimensional(2D) brightness temperature spectrum was drawn from combining each data point through automatic continuous scanning of FTIR along with altitude and azimuth. At higher altitude, temperature of background was decreased but scattering effect of atmospheric gases was increased. Increase in temperature difference between background and blackbody in SCADS at higher temperature causes to increases in peak intensity of $SF_6$. This approach shows us a possibility that 2D visual information is acquired from scanning data with a single FTIR-SCADS.

Keywords

References

  1. H. Y. Bae, S. I. Oh, D. H. Park, V. A. Boiko, "Design and Test of High Speed Rotary Scan Interferometer for FTIR Spectrometer Application," Optical society of Korea Annual Meeting, pp. 30-31, 2004.
  2. E. Flores, K. Schafer, J. Black, R. Harig, C. Jahn, "Remote Sensing of Aircraft Exhaust Temperature and Composition by Passive Fourier Transform Infrared," Proc. of SPIE, Vol. 6745, pp. 67451Q-1-67451Q-12, 2007.
  3. Y. Chen, Y. Hu, K. Kou, H. Li, G. Zhang, "Research on the Influence of Ocean Atmosphere to Infrared Detection," Adv. Mat. Research, Vol. 472-475, pp. 1698-1701, 2012. https://doi.org/10.4028/www.scientific.net/AMR.472-475.1698
  4. B. H. Park, Y. I. Kang, D. S. Hong, J. H. Lee, J. H. Kim, "A Study of Passive FTIR Sensor System," The 20th Conference of Ground Waepon System, pp. 82-85, 2012.
  5. J. P. Jo, Y. J. Lee, G. C. Kim, O. S. Kwon, "Measurements of non-$CO_2$ Greenhouse Gases from Passenger Cars using FTIR Spectroscopy," The Korean Society of Automotive Engineers, Vol. 11, pp. 563-566, 2009.
  6. D. I. Kang, T. Y. Moon, S. E. Lee, C. Y. Seo, J. S. Kim, "A Study Of Greenhouse Gas Emission Rate from LPG Vehicles According to Driving Cycles", The Korean Society of Automotive Engineers, Vol. 11, pp. 612-614, 2011.
  7. Kang, Young-Il; Park, Byeong-Hwang; Choi, Myung- Jin; Hong, Dea-Sik; Choi, Soo; Kim, Dong-Hwan; Park, Do-Hyun, "Noise Equivalent Differential Temperature of Passive FTIR Sensor System," Journal of the Korea Institute of Military Science and Technology, Vol. 14, No. 2, pp. 161-166, 2011. https://doi.org/10.9766/KIMST.2011.14.2.161
  8. A. Beil, R. Daum, R. Harig, and G. Matz, "Remote Sensing of Atmospheric Pollution by Passive FTIR Spectrometry," Proceedings of SPIE Vol. 3493, pp. 32-43, 1998.
  9. R. Harig, G. Matz, P. Rusch, J.-H. Gerhard, K. Schafer, C. Jahn, P. Schwengler, A. Beil, "Remote Detection of Methane by Infrared Spectrometry for Airborne Pipeline Surveillance : First Results of Ground-Based Measurements," Proceedings of SPIE, Vol. 5235, pp. 435-446, 2004.
  10. R. Harig, G. Matz, P Rusch, H.-H. Gerhard, J.-H. Gerhard, V. Schlabs, "Infrared Remote Sensing of Hazardous Vapours : Surveillance of Public Areas During the FIFA Football World Cup 2006," Proceedings of SPIE, Vol. 6538, pp. 65381Z-1-65381Z-10, 2007.
  11. J. M. Theriault, P. Lacasse, H. Lavoie, F. Bouffard, Y. Montembeault, V. Fareley, L. Belhumeur, P. Lagueux, "CATSI EDM-a New Sensor for the Real Time Passive Stand-off Detection and Identification of Chemicals," Proceedings of SPIE, Vol. 7665, pp. 766513-1-766513-10, 2010. https://doi.org/10.1117/12.850318
  12. M. I. Blecka, M. Rataj, G. Szymanski, "Passive Detection of Biological Aerosols in Atmosphere with a Fourier Transform Instrument(FTIR)," Vol. 42, pp. 101-111, 2012. https://doi.org/10.1007/s11084-012-9288-z
  13. D. S. Kim, D. H. Park, S. K. Choi, S. U. Na, "Radiometric Calibration For Passive Remote Sensing FTIR Spectrometer", The Proceeding of Optical Society of Korea Annual Meeting, Vol. 17, No. 5, pp. 391-395, 2006.