Preview

Agrarian science

Advanced search

Digital tools for agrobiological and phonological accounting of the Anapa ampelographic collection

https://doi.org/10.32634/0869-8155-2023-367-2-100-105

Abstract

Relevance. Digitalization in the monitoring system of vine plantations of agrobiological indicators is the most important resource for the development of viticulture. Digital tools for collecting, analyzing and visualizing data can improve the efficiency and accuracy of scientific research in the field of viticulture. The purpose of the work. Digitalization of methods for the rapid collection of scientific data on the state of grape plantations in real time based on mobile digital spatial positioning devices.

Methods. Agrobiological and phenological accounting with recording data in the observation log on paper and entering data into spreadsheets from the keyboard and voice. Evaluation of errors and timing of transferring data from paper to a computer database when manually writing data to a log with recoding into a CSV-text format for the MySQL DBMS. AppSheet technology was used as a platform for collaborative work of mobile devices with Internet server databases.

Results. The automated system for collecting, recording and processing data on agrobiological and phenological indicators of grape varieties is designed for route and field studies of the Anapa ampelographic collection during field data collection on grape bushes. It is used in agronomic and phenological accounting by specialists of research organizations. The main functions of the program are data registration using a mobile digital device in the field and their transfer to a cloud database on the Internet. The results of the calculation of agrobiological and phenological indicators of grapes are transmitted in real time to digital electronic devices connected to the Internet. The program records the date and time of the field observation, geographic coordinates, agrobiological and phenological indicators of the survey, and a photo of the bush.

About the Authors

V. A. Orlov
Anapa Zonal Experimental Station of Viticulture and Winemaking – Branch of the Federal State Budget Scientific Institution «North Caucasian Federal Scientific Center of Horticulture, Viticulture, Wine-making»
Russian Federation

Vitali Aleksandrovich Orlov, Candidate of Agricultural Sciences, Senior Researcher

36, Pionersky Ave., Anapa, 353456;

Phone: +7(989) 764-29-85



A. A. Lukyanov
Anapa Zonal Experimental Station of Viticulture and Winemaking – Branch of the Federal State Budget Scientific Institution «North Caucasian Federal Scientific Center of Horticulture, Viticulture, Wine-making»
Russian Federation

Alexey Aleksandrovich Lukyanov, Candidate of Agricultural Sciences, Senior Researcher, Director

36, Pionersky Ave., Anapa, 353456;

Phone: +7(989) 447-93-81

 



References

1. On viticulture and winemaking in the Russian Federation: Federal Law No. 468-FZ of 27.12.2019 (as amended on 02.07.2021) (In Russian). [Electronic resource]. – Access mode: http://publication.pravo.gov.ru/Document/View/0001201912280016 (accessed: 08/17/2022).

2. Orlov V.A., Lukyanov A.A. Elements of digitalization of grape plantations based on a geoinformation system. Fruit growing and viticulture in the South of Russia. 2022; 73(1): 14–27 (In Russian). DOI: 10.30679/2219-5335-2022-1-73-14-27

3. Stepnykh N.V., Nesterova E.V., Zargaryan A.M., Zhukova O.A., Stepnykh T.V. Digitalization of agrotechnology management. Kurtamysh: LLC «Kurtamysh printing house» 2018; 43 (In Russian).

4. Kuznetsov P.N., Kotelnikov D.Yu. Automated technological complex for monitoring and diagnostics of vineyards. Bulletin of Agrarian Science of the Don. 2021; 4(56): 16–23 (In Russian).

5. Smart Irrigation and Pruning Practices Reduce Heat Wave Impact on Yields. Available from: https://www.terraview.co/vineyard-reduce-heatwave-impact/ (аccessed: 17.08.2022).

6. NASA researchers are helping growers improve wine quality by using remote-sensing technology to scan vineyards from high above California. Available from: http//www.sciencedaily.com/releases/2001/09/010903092914.htm (аccessed: 08.17.2022).

7. Tondriaux C., Costard A., Bertin C., Duthoit S., Hourdel J., Rousseau J. How can remote sensing techniques help monitoring the vine and maximize the terroir potential? E3S Web Conf. Volume. 2018; 50: 02007. DOI: 10.1051/e3sconf/20185002007

8. Sectormentor: Case study: vineyard monitoring at Gusbourne, Available from: https://vines.vidacycle.com/vineyard-monitoring-atgusbourne/ (аccessed: 08.17.2022).

9. A new smartphone app will predict the yield of vineyards earlier and more accurately. Federal Journal «Agribusiness». A daily online publication about agriculture and agribusiness. Krasnodar, 2021 (In Russian). Access mode: https://agbz.ru/news/novoe-prilozheniedlya-smartfonov-predskazhet-urozhaynost-vinogradnikov-ranshe-itochnee/?sphrase_id=1728212 (аccessed: 08.17.2022).

10. Hellman Ed. The vineyard advisor mobile application may. Available from: https://www.lodigrowers.com/the-vineyard-advisormobile-application/ (аccessed: 17.08.2022).

11. Ehman L. Semios Named to 2022 Thrive Top 50 Global Agtech Companies. Available from: https://semios.com/solutions/scoutingtool/#weglot_switcher (аccessed: 08.17.2022).

12. Certificate of registration of the computer program RU 2022665023 «Automated system for collecting, accounting and processing data on agrobiological and phenological indicators of grape varieties». Lukyanov A.A., Orlov V.A. 08/19/2022, byul. No. 8 (In Russian).

13. Lazarevsky M.A. The study of grape varieties. Rostov n/D: Rostov University. 1963; 151 (In Russian).

14. Matuzok N.V., Maltabar L.M. Improving the methodology of forecasting the yield of grape plantations before launching. Grapes and wine of Russia. 1996; 5: 26–29 (In Russian).

15. Matuzok N.V., Troshin L.P. Optimization of grape cultivation technology based on the use of the yield forecasting method. Polythematic online electronic scientific journal of the Kuban State Agrarian University. 2015; 105(01): 1000–1034 (In Russian).

16. Certificate of registration of the computer program RU 2018661315 «RU-VITIS database management System». Bolshakov V.A., Petrov V.S. 05.09.2018, byul. No. 9. (In Russian).


Review

For citations:


Orlov V.A., Lukyanov A.A. Digital tools for agrobiological and phonological accounting of the Anapa ampelographic collection. Agrarian science. 2023;(2):100-105. (In Russ.) https://doi.org/10.32634/0869-8155-2023-367-2-100-105

Views: 220


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 0869-8155 (Print)
ISSN 2686-701X (Online)
X