Vol. 31, issue 02, article # 13

Ogreb S. M., Tishaninov M. V., Jukhno P. M. Some general regularities in object detection on the basis of hyperspectral data. // Optika Atmosfery i Okeana. 2018. V. 31. No. 02. P. 160–164. DOI: 10.15372/AOO20180213 [in Russian].
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Abstract:

Based on the results of statistical synthesis of optimal algorithm of object detection by hyperspectral instruments features of this algorithm are analyzed. The analysis allows us to reveal some general regularities in detection of spatial object from hyperspectral data, which connect amplitude and spectral differences in the radiation from object and from background.

Keywords:

spatial object, synthesis, detector, optimal algorithm, hyperspectral, signal-to-noise ratio, spectral characteristic

References:

  1. Shovengerdt R.A. Distancionnoe zondirovanie. Modeli i metody obrabotki izobrazhenij. M.: Tehnosfera, 2010. 560 p.
  2. Belov V.V., Tarasenkov M.V., Piskunov K.P. Parametricheskaja model' solnechnoj dymki v vidimoj i UF-oblasti spektra // Optika atmosf. i okeana. 2010. V. 23, N 4. P. 294–287.
  3. Belov V.V., Beloborodov V.E., Kabanov D.M., Ogreb S.M., Piskunov K.P., Sakerin S.M., Tarasenkov M.V. O vozmozhnosti prognoza ajerozol'noj opticheskoj tolshhi atmosfery po dannym izmerenij radiometra Cimel CE-318 // Optika atmosf. i okeana. 2012. V. 25, N 1. P. 80–86.
  4. Afonin S.V. Aprobacija sposoba vosstanovlenija AOT nad sushej po sputnikovym izmerenijam MODIS v IK-diapazone spektra // Optika atmosf. i okeana. 2011. V. 24, N 8. P. 703–705; Аfоnin S.V. An appraisal of the method of AOD retrieval over land according to MODIS satellite measurements in IR spectral range // Atmos. Ocean. Opt. 2011. V. 24, N 6. P. 584–586.
  5. Juhno P.M., Ogreb S.M., Tishaninov M.V. Statisticheskij sintez giperspektral'nogo obnaruzhitelja // Avtometrija. 2015. V. 51, N 3. P. 61–69.