Hyperspectral Imaging (HSI) Application for Detection of Organic Compounds in Water

수질중 잔류유기오염물질 검출을 위한 초분광영상(HSI) 이용

  • Lee, Seung-Min (Water Analysis and Research Center of K-water Institute, K-water) ;
  • Lee, Jeong-Yeop (Water Analysis and Research Center of K-water Institute, K-water) ;
  • Baek, Kyung-Hee (Water Analysis and Research Center of K-water Institute, K-water) ;
  • Choi, Jong-Woo (Environmental Measurement & Analysis Center, Environmental Infrastructure, Research Department, National Institute of Environmental Research, Environmental Research Complex) ;
  • Kim, Yun S. (Water Analysis and Research Center of K-water Institute, K-water)
  • 이승민 (K-water 수질분석연구센터) ;
  • 이정엽 (K-water 수질분석연구센터) ;
  • 백경희 (K-water 수질분석연구센터) ;
  • 최종우 (국립환경과학원 환경기반연구부 환경측정분석센터) ;
  • 김윤석 (K-water 수질분석연구센터)
  • Published : 2012.09.30

Abstract

Hyperspectral sensor can confirm more exact material property because spectrum bandwidth is more details than multispectral sensor. Actually, it is not many reported previously, measurement of climate change, vegetation and ecology environment using hyperspectral sensor based on satellite, airborne and fixed ground are used in the world. However, water quality management using hyperspectral imaging system is limited and temporary. Therefore it is not enough data library to apply management of water environment with hyperspectral sensor. In this study, water quality analysis methods using hyperspectral sensor based on principle of NIR, FTIR and Raman spectroscopy to apply analysis organic compounds in water were described. This study will provide good information for many applications to control water quality of river and treatment water.

Keywords

References

  1. Goodenough, D.G., A.Dyk, K.O.Niemann, J. S. Pearlman, H. Chen, T. Han, M. Murdoch, and C. West. IEEE Transactions on Geoscience and Remote Sensing, 2003, 41, 1321-1331. https://doi.org/10.1109/TGRS.2003.813214
  2. Zarco Tejada, P.J., J.R. Miller, T.L. Noland, G.H. Mohammed, and P.H. Sampson. IEEE Transactions on Geoscience and Remote Sensing, 2001, 39, 1491-1507. https://doi.org/10.1109/36.934080
  3. Gelpi, C.C. Remote Seinsing of Environment, 2000, 74, 414-421. https://doi.org/10.1016/S0034-4257(00)00134-6
  4. Kallio, K., S. Koponen, and J. Pulliainen. International Journal of Remote Sensing, 2003, 24, 3771-3790. https://doi.org/10.1080/0143116021000023899
  5. Koponen, S., J. Pulliainen, K. Kallio, and M. Hallikainen. Remote Sensing of Environment, 2002, 79, 51-59. https://doi.org/10.1016/S0034-4257(01)00238-3
  6. Kaishan Song, Lin Lia, Lenore P. Tedesco, Shuai Li, Nicolas A. Clercin, Bob E. Hall, Zuchuan Li, Kun Shi. Science of The Total Environment, 2012, 426, 220-232. https://doi.org/10.1016/j.scitotenv.2012.03.058
  7. Herold, M., D. A. Roberts, M. E. Gardner, and P. E. Remote Seinsing of Environment, 2004, 91, 304-319. https://doi.org/10.1016/j.rse.2004.02.013
  8. Ben-Dor, E., N. Levin, and H. Saaroni. Israel International Journal of Remote Sensing, 2001, 22, 2193- 2218.
  9. S.H. Kim, K.S. Lee. Korean Journal of Remote Sensing, 2005, 21, 341-369.
  10. Verdin, J. Pohtogramm, Eng. Remote Sens, 1985, 51, 343-353.
  11. K.E. Kim, T.S. Lee. The journal of GIS Association of Korea, 1994, 2, 65-74.
  12. Jang D.H., and G. H. Jo, 1998, "The Development of water quality Monitoring System and its Application Using Satellite Image daya". Int. Symposium on Remote Sensing & The Second KOMPSAT OSMI Workshop.
  13. E. Ben-Dor, A. Banin. 1993, Department of Soil and Water Sciences, Faculty of Agriculture, Hebrew University of Jerusalem, Rehovot, Israel.
  14. Paul Williams, Paul Geladi, Glen Fox, Marena Manley. Analytica Chimica Acta, 2009, 653, 121-130. https://doi.org/10.1016/j.aca.2009.09.005
  15. Green, A. A., M. Bernam, P. Switzer, and M. D. Graig. IEEE Transactions on Geoscience and Remote Sensing, 1998, 26, 65-74.
  16. Van der Meer, F. and V. Kato. International Journal of Remote Sensing, 2002, 23, 5087-5094. https://doi.org/10.1080/01431160210147063
  17. Biggar, S.F, K.K. Thome, and W. Wisniewski. IEEE Transactions on Geoscience and Remote Sensing, 2003, 41, 1174-1179. https://doi.org/10.1109/TGRS.2003.813211
  18. Inflection of airborne hyperspectral remote sensing, Dongsan Corporation, 2012.
  19. Mary E. Martin, John D. Aber. Ecological Applications, 1987, 7, 431-443.
  20. Asner, G.P., M.M.C. Bustamante, and A. R. Central Anazon, Remote Sensing of Environment, 2003, 87, 507-520. https://doi.org/10.1016/j.rse.2003.03.001
  21. A. Brook, E. Ben-Dor, R. Richter. Hyperspectral Workshop, 2010.
  22. Presentation report of coastline reference, Hanjin information telecom, 2011.
  23. Specim imaging Ltd. Homepage, http://www.specim.fi/applications/remote-sensing.html.
  24. University of Texas at Austin center for space research homepage, http://www.csr.utexas.edu/
  25. George, D. G., Hewitt, D. P. Proceedings of the NERC synposium on airborne remote sensing 1990(18 December, held at BGS), 1990, 193-201.
  26. Camilla Brekke, Anne H.S. Solberg, Remote Sensing of Environment, 2005, 95, 1-13. https://doi.org/10.1016/j.rse.2004.11.015
  27. A.A. Gowen, C.P. O'Donnell, P.J. Cullen, G. Downey, J.M. Frias. Trends in Food Science & Technology, 2007, 18, 590-598. https://doi.org/10.1016/j.tifs.2007.06.001
  28. Griffiths, P. de Hasseth, J.A. "Fourier Transform Infrared Spectrometry". 2nd edition, 2007, Wiley-Blackwell, USA.
  29. R. Salzer, G. Steiner, H. H. Mantsch, J. Mansfield, E. N. Lewis, Journal of Analytical Chemistry, 2000, 366, 712-726. https://doi.org/10.1007/s002160051565
  30. H.W. Lee, C. S. Kong, H.S. Park, H.J. Ko. The Journal of Korean Society of Crop Science, 2005, 50, 140-141.
  31. Eunyoung Choe, Freek van der Meer, Frank van Ruitenbeek, Harald van der Werff, Boudewijn de Smeth, Kyoung-Woong Kim, Remote Sensing of Environment, 2008, 112, 3222-3233. https://doi.org/10.1016/j.rse.2008.03.017
  32. D.A. Burns and E.W. Ciurczak. "Handbook of Near Infrared Analysis", 1992, Marcel Dekker Inc., New York, USA.