Menu
AGRICULTURE MECHANIZATION AND ELECTRIFICATION

PREPARATION OF AUTOMATED MONITORING OF THE MICROCLIMATE OF A FARMER'S GREENHOUSE

Bakytkul Bekaiydarova 1 , Аibek Atykhanov 1

1 Kazakh National Agrarian Research University

doi.org/10.37884/2-2023/37 pp. 369-381 Admitted 15.02.2023 Published 29.06.2023

Abstract

This article is a logical development of a previously implemented scientific project on the topic "Development of energy-saving technology for year-round production and processing of fruit and vegetable products based on multifunctional solar dryers-greenhouses" (State Registration No. 0111RK00488, inv. No. 0212RK01775, for 2012-2015, the amount of funding is 40 million tenge) under the budget program 055 "scientific and/or scientific and technical activities, subprogram 100 "Program-targeted financing, under the program "Targeted development of university science focused on innovative results".

In winter, cultivated plants experience stress from a lack of natural light, which leads to a significant decrease in yield. In this regard, additional artificial lighting in the greenhouse allows the producer to extend the growing season and grow plants all year round or allows the producer to start sowing in early spring and continue the season until the first frost. Plants need about 10-12 hours of light to improve growth. When growing flowers or fruits, the additional need for light per day increases to 16 hours (5).

At the same time, the automation of this process will eliminate the concern that the lighting is in order and during its absence displays monitoring data on the display, or with the help of LEDs notifies about critical values of climatic parameters, or transmits data via the Internet to a tablet or phone for subsequent decision-making.

The article is aimed at meeting the demand of the population, farmers in the purchase of equipment adapted to local conditions, cheaper in cost and installation compared to analogues. The equipment attracts with its ease of manufacture and further operation.

Automated systems greenhouse microclimate monitoring algorithm farming mobile smart application lighting platform

01 Introduction

The full text of the article is available for download in PDF format on the right panel.

02 References

  1. 1. Боос Г.В., Прикупец Л.Б., Розовский Е.И., Столяревская Р.И. Стандартизация светотехнических приборов и установок для теплиц // Светотехника. – 2017. –№ 6 – С. 69–74.
  2. 2. H.M. Wollaeger, E.S. Runkle, “Green light: Is it important for plant growth?”, 2014, Michigan State University Extension. [Online]. Available: http://msue.anr.msu.edu/news/green_light_is_it_important_for_plant_gr owth (5-25-2016).
  3. 3. Lamnatou C, Chemisana D. Solar radiation manipulations and their role in greenhouse claddings: Fluorescent solarconcentrators, photoselective and other materials //Journal Citation Reports®. –2013. –P.175-190. DOI:10.1016/j.rser.2013.06.052. NOV 2013.ISSN:1364-0321. webofknowledge.com.
  4. 4. Несиоловский О.Г., Адакин Р.Д., Соцкая И.М. Разработка алгоритмов энергосберегающего управления микроклиматом (полив, освещение, обогрев, вентиляция) в промышленных теплицах //совершенствование электротехнических установок и систем энергоснабжения в сельском хозяйстве. – 2021. – С. 26-32.
  5. 5. Arielle J. Johnson, Elliot Meyerson, John de la Parra, Timothy L. Savas, Risto Miikkulainen, Caleb B. Harper. Flavor-cyber-agriculture: Optimization of plant metabolites in an open-source control environment through surrogate modeling // PLOS ONE. – 2019. – April.
  6. 6. Овчинников, И.К., and Р.П. Павликов. "Разработка модели «умной» теплицы с возможностью дистанционного управления." (2021): 43-44.
  7. 7. Прикупец Л.Б., Боос Г.В., Терехов В.Г., Тараканов И.Г. Исследование влияния излучения в различных диапазонах области ФАР на продуктивность и биохимический состав биомассы салатно-зеленных культур // Светотехника. – 2018. –№ 5 – С. 6–12.
  8. 8. Петин В.А. Проекты с использованием контроллера Arduino / В.А. Петин - СПб.: БХВ-Петербург, 2014.- 400с
  9. 9. Терехов В. Г. Метод экспериментального определения оптимальных параметров технологического освещения в условиях светокультуры зеленных растений. Автореферат, Москва. 2020, стр. 15-18.
  10. 10. Сашина А., Майданов Н., Березина А. Умная теплица «SmartGreenhouse» //От зеленого кампуса-к зеленому городу. – 2022. – С. 46-63.
  11. 11. Столяревская Р.И., Розовский Е.И. Современное состояние и развитие фотометрии осветительных приборов // Светотехника. – 2017. – № 4. – С. 4 – 13.
  12. 12. Сулейманов В.О., Мезенцев Е.Е., Козлов А.В. Применение светодиодных светильников для освещения теплиц. Актуальные вопросы науки и хозяйства: новые вызовы и решения Сборник Материалов LV Студенческой Научно-Практической Конференции. Том Часть 2. 2021, Стр: 710-713
  13. 13. Sacilik K., Keskin R., Elicin A. Mathematical modelling of solar tunnel drying of thin layer organic tomato // Journal of Food Engineering. - 2006. - Vol. 73, №3. - P. 231-238

Citation Links

[1]2023. PREPARATION OF AUTOMATED MONITORING OF THE MICROCLIMATE OF A FARMER’S GREENHOUSE. Izdenister natigeler. 2 (98) (Jun. 2023), 369–381. DOI:https://doi.org/10.37884/2-2023/37.
(1)PREPARATION OF AUTOMATED MONITORING OF THE MICROCLIMATE OF A FARMER’S GREENHOUSE. Izdenister natigeler 2023, No. 2 (98), 369-381. https://doi.org/10.37884/2-2023/37.
PREPARATION OF AUTOMATED MONITORING OF THE MICROCLIMATE OF A FARMER’S GREENHOUSE. (2023). Izdenister Natigeler, 2 (98), 369-381. https://doi.org/10.37884/2-2023/37
PREPARATION OF AUTOMATED MONITORING OF THE MICROCLIMATE OF A FARMER’S GREENHOUSE. Izdenister natigeler, [S. l.], n. 2 (98), p. 369–381, 2023. DOI: 10.37884/2-2023/37. Disponível em: https://natsus.kaznaru.edu.kz/index.php/research/article/view/240. Acesso em: 15 sep. 2026.
“PREPARATION OF AUTOMATED MONITORING OF THE MICROCLIMATE OF A FARMER’S GREENHOUSE”. 2023. Izdenister Natigeler, no. 2 (98) (June): 369-81. https://doi.org/10.37884/2-2023/37.
“PREPARATION OF AUTOMATED MONITORING OF THE MICROCLIMATE OF A FARMER’S GREENHOUSE” (2023) Izdenister natigeler, (2 (98), pp. 369–381. doi:10.37884/2-2023/37.
[1]“PREPARATION OF AUTOMATED MONITORING OF THE MICROCLIMATE OF A FARMER’S GREENHOUSE”, Izdenister natigeler, no. 2 (98), pp. 369–381, Jun. 2023, doi: 10.37884/2-2023/37.
“PREPARATION OF AUTOMATED MONITORING OF THE MICROCLIMATE OF A FARMER’S GREENHOUSE”. Izdenister Natigeler, no. 2 (98), June 2023, pp. 369-81, https://doi.org/10.37884/2-2023/37.
“PREPARATION OF AUTOMATED MONITORING OF THE MICROCLIMATE OF A FARMER’S GREENHOUSE”. Izdenister natigeler, no. 2 (98) (June 29, 2023): 369–381. Accessed September 15, 2026. https://natsus.kaznaru.edu.kz/index.php/research/article/view/240.
1.PREPARATION OF AUTOMATED MONITORING OF THE MICROCLIMATE OF A FARMER’S GREENHOUSE. Izdenister natigeler [Internet]. 2023 Jun. 29 [cited 2026 Sep. 15];(2 (98):369-81. Available from: https://natsus.kaznaru.edu.kz/index.php/research/article/view/240
1.PREPARATION OF AUTOMATED MONITORING OF THE MICROCLIMATE OF A FARMER’S GREENHOUSE. Izdenister natigeler. 2023;(2 (98):369-381. doi:10.37884/2-2023/37