ISSN 2070-7401 (Print), ISSN 2411-0280 (Online)
Sovremennye problemy distantsionnogo zondirovaniya Zemli iz kosmosa
CURRENT PROBLEMS IN REMOTE SENSING OF THE EARTH FROM SPACE

  

Sovremennye problemy distantsionnogo zondirovaniya Zemli iz kosmosa, 2018, Vol. 15, No. 5, pp. 257-262

Current problems and prospects for the use of remote sensing of the Earth in agriculture

V.P. Yakushev 1 , S.Yu. Blokhina 1 
1 Agrophysical Research institute, Saint Petersburg, Russia
Accepted: 12.10.2018
DOI: 10.21046/2070-7401-2018-15-5-257-262
The paper presents the results of the Second All-Russia Scientific Conference with International Participation “The Use of Remote Sensing of the Earth in Agriculture” conducted at Agrophysical Research Institute on September 26–28, 2018. The development of techniques and methods of remote sensing of the Earth and their increasing application in agriculture over the recent years has revealed new ambitious possibilities for immediate evaluation of vegetation and soil state and elaboration of planning and operational agromeliorative approaches to farming industry based on intellectual decision-making support systems. The main research directions, new methods and the algorithms, domestic software and mathematical tools for using remote sensing data in information support of agriculture presented at the plenary session and the four thematic sections provide the mainstay for their rapid implementation in industrial practice. The exchange of views and research results among the conference participants will help to enhance essentially the quality of scientific support of agribusiness industry, and to develop an advance methodology of satellite data interpretation. For this purpose, in unanimous opinion of the conference participants, it is necessary to organize a network of specialized test polygons for ground truth observations and reference information acquisition. Particular attention in the discussion of the priority tasks of the domestic science was addressed to the problem of developing information support of the precision agriculture system, which is a key segment of “smart agriculture”, with remote sensing data. The participants of the conference emphasized that scientific and technological progress in precision farming industry is impossible without the extensive use of remote sensing data.
Keywords: all-Russia conference, remote sensing of the Earth, aerospace techniques and methods, agroecosystem monitoring, precision agriculture, test polygons, ameliorative systems, reference information, measuring systems, decision support systems, mathematical models
Full text

References:

  1. Bartalev S. A., Egorov V. A., Zharko V. O., Loupian E. A., Plotnikov D. E., Khvostikov S. A., Shabanov N. V., Sputnikovoe kartografirovanie rastitel’nogo pokrova Rossii (Mapping of Russia’s vegetation cover), Moscow: IKI RAN, 2017, 208 p.
  2. Bure V. M., Mitrofanov E. P., Mitrofanova O. A., Petrushin A. F., Vydelenie odnorodnykh zon sel’skokhozyaistvennogo polya dlya zakladki opytov s pomoshch’yu bespilotnogo letatel’nogo apparata (Selection of homogeneous zones of agricultural field for laying of experiments using unmanned aerial vehicle), Vestnik Sankt-Peterburgskogo universiteta. Prikladnaya matematika. Informatika. Protsessy upravleniya, 2018, Vol. 14, No. 2, pp. 145–150.
  3. Kanash E. V., Yakushev V. P., Osipov Yu. A., Rusakov D. V., Blokhina S. Yu., Kravtsova A. V., Opticheskie kharakteristiki list’ev yarovoi pshenitsy pri defitsite azota i vody (Optical characteristics of the spring wheat leaves under the nitrogen and water deficiency conditions), Vestnik rossiiskoi sel’skokhozyaistvennoi nauki, 2017, No. 4, pp. 9–12.
  4. Loupian E. A., Balashov I. V., Burtsev M. A., Efremov V. Yu., Kashnitsky A. V., Kobets D. A., Krasheninnikova Yu. S., Mazurov A. A., Nazirov R. R., Proshin A. A., Sychugov I. G., Tolpin V. A., Uvarov I. A., Flitman E. V., Sozdanie tekhnologii postroeniya informatsionnykh sistem distantsionnogo monitoringa (Development of information systems design technologies), Sovremennye problemy distantsionnogo zondirovaniya Zemli iz kosmosa, 2015, Vol. 12, No. 5, pp. 53–75.
  5. Loupian E. A., Burtsev M. A., Proshin A. A., Kobets D. A., Razvitie podkhodov k postroeniyu informatsionnykh sistem distantsionnogo monitoringa (Evolution of remote monitoring information systems development concepts), Sovremennye problemy distantsionnogo zondirovaniya Zemli iz kosmosa, 2018, Vol. 15, No. 3, pp. 53–66, DOI: 10.21046/2070-7401-2018-15-3-53-66.
  6. Mikhailenko I. M., Razvitie metodov i sredstv primeneniya dannykh distantsionnogo zondirovaniya Zemli v sel’skom khozyaistve (Application of methods and tools of remote sensing of the Earth data in agriculture), Tendentsii razvitiya nauki i obrazovaniya, Vol. 41, Ch. 3, Izd. NITs “L-Zhurnal”, 2018, pp. 70–83.
  7. Petrushin A. F., Mitrofanov E. P., Otsenka sostoyaniya drenazhnykh sistem sel’skokhozyaistvennogo polya s pomoshch’yu dannykh distantsionnogo zondirovaniya (Assessment of the agricultural field drainage system status using remote sensing data), Vestnik rossiiskoi sel’skokhozyaistvennoi nauki, 2017, No. 4, pp. 17–20.
  8. Plotnikov D. E., Bartalev S. A., Loupian E. A., Priznaki raspoznavaniya pakhotnykh zemel’ na osnove mnogoletnikh ryadov dannykh sputnikovogo spektroradiometra MODIS (The recognition features to map arable lands based on multi-annual MODIS Earth observation data), Sovremennye problemy distantsionnogo zondirovaniya Zemli iz kosmosa, 2010, Vol. 7, No. 1, pp. 330–341.
  9. Tolpin V. A., Loupian E. A., Bartalev S. A., Plotnikov D. E., Matveev A. M., Vozmozhnosti analiza sostoyaniya sel’skokhozyaistvennoi rastitel’nosti s ispol’zovaniem sputnikovogo servisa “VEGA” (Possibilities of agricultural vegetation condition analysis with the “VEGA” satellite service), Optika atmosfery i okeana, 2014, Vol. 27, No. 7 (306), pp. 581–586.
  10. Yakushev V. V., Tochnoe zemledelie: teoriya i praktika (Precision Agriculture: Theory and Practice), St. Petersburg: FGBNU AFI, 2016, 364 p.
  11. Yakushev V. P., Lekomtsev P. V., Voropaev V. V., Konev A. V., Pervak T. S., Differentsirovannoe primenenie sredstv khimizatsii pri vyrashchivanii yarovoi pshenitsy (Discriminatory application of the chemicals under the spring wheat cultivation), Vestnik rossiiskoi sel’skokhozyaistvennoi nauki, 2017, No. 4, pp. 13–16.
  12. Yakushev V. P., Yakushev V. V., Konev A. V., Matveenko D. A., Chasovskikh S. V., O sovershenstvovanii realizatsii agrotekhnologicheskikh reshenii v tochnom zemledelii (About perfectioning of the agrotechnological solutions realization in the precision farming), Vestnik rossiiskoi sel’skokhozyaistvennoi nauki, 2018, No. 1, pp. 13–17.
  13. Yakushev V., Kanash E., Rusakov D., Blokhina S., Specific and non-specific changes in optical characteristics of spring wheat leaves under nitrogen and water deficiency, Advances in Animal Biosciences: Papers presented at the 11th European Conf. Precision Agriculture (ECPA 2017), Edinburgh, UK, July 16–20 2017, The Animal Consortium, 2017, Vol. 8, Special Issue 2, pp. 229–232, DOI: 10.1017/S204047001700053X.