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DIGITAL VINEYARD MAPPING USING HIGH RESOLUTION REMOTE SENSED DATA IN THE AREA OF TOKAJ WINE REGION

Beko, Laszlу, Bozo, Pal, Burai, Peter, Lukacsy, Gyorgy, Hunyadi, Gergely

First published: 2016-06-28https://doi.org/10.5593/sgem2016/b23/s11.024View metrics

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Publication details

Title
DIGITAL VINEYARD MAPPING USING HIGH RESOLUTION REMOTE SENSED DATA IN THE AREA OF TOKAJ WINE REGION
Authors
Beko, Laszlу, Bozo, Pal, Burai, Peter, Lukacsy, Gyorgy, Hunyadi, Gergely
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; 16th International Multidisciplinary Scientific GeoConference SGEM2016, Informatics, Geoinformatics and Remote Sensing
Publisher
Stef92 Technology
Year
2016
Pages
183-190
ISSN
1314-2704
ISBN
978-619-7105-60-5
Language
en
Publication type
Conference Paper
References22
  1. Bekő L., Lukácsy G., Katona Z., Burai P., Tokaji szőlőtermőhelyek felmérése légi távérzékelési technológiával, VI. Térinformatikai Konferencia és Szakkiállítás, Hungary, 2015, pp 53-59.

  2. Bramley R.G.V., Hamilton R.P, Understanding variability in winegrape production systems, Australian Journal of Grape and Wine Research, vol. 10/issue 1, pp 32-45, 2004.

  3. Comba L., Gay P., Primicerio J., Aimonino D.R., Vineyard detection from unmanned aerial systems images, Computers and Electronics in Agriculture, vol. 114, pp 78-87, 2015.

  4. Delenne C., Durrier S., Rabatel G., Deshayes M., From pixel to vine parcel: A complete methodology for vineyard delineation and characterization using remote sensing data, Computers and Electronics in Agriculture, vol. 70, pp 78-83, 2010.

  5. Hall A., Lamb D.W., Louis J., Holzapfel B., Optical remote sensing applications in viticulture-a review, Australian Journal of Grape and Wine Research, vol. 8/issue 1, pp 36-47, 2002.

  6. Hall E., Louis J., Lamb D., Characterising and mapping vineyard canopy using high- spatial resolution aerial multispectral images, Computers and Geoscience, vol. 29, pp 813-822, 2003.

  7. Lamb D.W., Weedon M.M., Bramley R.G.V., Using remote sensing to predict grape phenolics and colour at harvest in a Cabernet Sauvignon vineyard: timing observation against vine phenology and optimizing resolution, Australian Journal of Grape and Wine Research, vol. 10/issue 1, pp. 46-54, 2004.

  8. Lukácsy G., Tombor A., Goreczky A., Nagy L., Szabó J., László P., Burai P., Bekő L., Jung A., Kridtóf D., Bisztray G.D., Báló B., Evaluation of state of vineyards and characterization of vineyard sites of the integrated area of Tokaj Kereskedőház Ltd. in Tokaj region, Terroir Conference, Hungary, 2014. 16th International Multidisciplinary Scientific GeoConference SGEM 2016

  9. Rabatel G., Delenne C., Deshayes M., A non-supervised approach using Gabor filters for vine-plot detection in aerial images, Computers and Electronics in Agriculture, vol. 62, pp 159-168, 2008.

  10. Wassenaar T., Robbez-Masson J.M., Andrieux P., Baret F., Vineyard indetification and description of spatial crop structure by per-field frequency analysis, International Journal of Remote Sensing, vol. 23, pp 3311-3325, 2002.

  11. Zarco-Tejada P.J., Berjon A., Lopez-Lozano R., Miller J.R., Martin P., Cachorro V, Gonzalez M.R., DeFrutos A., Assessing vineyard condition with hyperspectral indices: Leaf and canopy reflectance simulation in row-structured discontinuous canopy, Remote Sensing of Environment, vol. 99, pp 271-287, 2005.

  12. Bekő L., Lukácsy G., Katona Z., Burai P., Tokaji szőlőtermőhelyek felmérése légi távérzékelési technológiával, VI. Térinformatikai Konferencia és Szakkiállítás, Hungary, 2015, pp 53-59.

  13. Bramley R.G.V., Hamilton R.P, Understanding variability in winegrape production systems, Australian Journal of Grape and Wine Research, vol. 10/issue 1, pp 32-45, 2004.

  14. Comba L., Gay P., Primicerio J., Aimonino D.R., Vineyard detection from unmanned aerial systems images, Computers and Electronics in Agriculture, vol. 114, pp 78-87, 2015.

  15. Delenne C., Durrier S., Rabatel G., Deshayes M., From pixel to vine parcel: A complete methodology for vineyard delineation and characterization using remote sensing data, Computers and Electronics in Agriculture, vol. 70, pp 78-83, 2010.

  16. Hall A., Lamb D.W., Louis J., Holzapfel B., Optical remote sensing applications in viticulture-a review, Australian Journal of Grape and Wine Research, vol. 8/issue 1, pp 36-47, 2002.

  17. Hall E., Louis J., Lamb D., Characterising and mapping vineyard canopy using high- spatial resolution aerial multispectral images, Computers and Geoscience, vol. 29, pp 813-822, 2003.

  18. Lamb D.W., Weedon M.M., Bramley R.G.V., Using remote sensing to predict grape phenolics and colour at harvest in a Cabernet Sauvignon vineyard: timing observation against vine phenology and optimizing resolution, Australian Journal of Grape and Wine Research, vol. 10/issue 1, pp. 46-54, 2004.

  19. Lukácsy G., Tombor A., Goreczky A., Nagy L., Szabó J., László P., Burai P., Bekő L., Jung A., Kridtóf D., Bisztray G.D., Báló B., Evaluation of state of vineyards and characterization of vineyard sites of the integrated area of Tokaj Kereskedőház Ltd. in Tokaj region, Terroir Conference, Hungary, 2014. 16th International Multidisciplinary Scientific GeoConference SGEM 2016

  20. Rabatel G., Delenne C., Deshayes M., A non-supervised approach using Gabor filters for vine-plot detection in aerial images, Computers and Electronics in Agriculture, vol. 62, pp 159-168, 2008.

  21. Wassenaar T., Robbez-Masson J.M., Andrieux P., Baret F., Vineyard indetification and description of spatial crop structure by per-field frequency analysis, International Journal of Remote Sensing, vol. 23, pp 3311-3325, 2002.

  22. Zarco-Tejada P.J., Berjon A., Lopez-Lozano R., Miller J.R., Martin P., Cachorro V, Gonzalez M.R., DeFrutos A., Assessing vineyard condition with hyperspectral indices: Leaf and canopy reflectance simulation in row-structured discontinuous canopy, Remote Sensing of Environment, vol. 99, pp 271-287, 2005.

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