Please use this identifier to cite or link to this item: https://ea.donntu.edu.ua/jspui/handle/123456789/32628
Title: Mathematical Model of Measuring Monitoring and Temperature Control of Growing Vegetables in Greenhouses
Other Titles: Mathematical Model of Measuring Monitoring and Temperature Control of Growing Vegetables in Greenhouses
Authors: Laktionov, Ivan S.
Vovna, Oleksandr V.
Kabanets, Maryna M.
Derzhevetska, Maryna A.
Zori, Anatolii A.
Keywords: energy balance
functional diagram
heat energy
greenhouse complex
microclimate
temperature
Issue Date: Jul-2020
Publisher: International Journal of Design & Nature and Ecodynamics. – Edmonton
Citation: Laktionov, I.S. Mathematical Model of Measuring Monitoring and Temperature Control of Growing Vegetables in Greenhouses / I.S. Laktionov, O.V. Vovna, M.M. Kabanets, M.A. Derzhevetska, A.A. Zori // International Journal of Design & Nature and Ecodynamics. – Edmonton, 2020. – Vol. 15 (3). – P. 325 – 336
Series/Report no.: International Journal of Design & Nature and Ecodynamics. – Vol. 15 (3).;
Abstract: The main purpose of the article is to improve the mathematical model of the process of computerized measuring monitoring and adaptive fuzzy control of temperature modes of growing crops in greenhouse conditions. The results of the research were obtained using methods of physical and mathematical modelling, theory of differential equations of mathematical physics, theory of thermal conductivity, methods of structural- algorithmic synthesis of complex technical systems. The main purpose of the article was achieved by taking into account types and periods of vegetation of crops and factors of seasonality and engineering design of greenhouses, which allowed substantiating the functional diagram of the system of monitoring and control of temperature in the growing zone. The article establishes regularities of influence of natural sources and technical components of heat energy inputs and losses in greenhouses taking into account current requirements for technological modes of greenhouse operating, which allowed estimating the range of total specific heat energy sufficient for the production. Promising areas for further research of the developed model were proposed in order to increase the integral efficiency of greenhouse farms. The obtained research results can be used as a scientific and applied basis for substantiating ways to optimize energy consumption of industrial greenhouses.
URI: http://ea.donntu.edu.ua/jspui/handle/123456789/32628
ISSN: 1755-7437 (Print)
Appears in Collections:Наукові публікації кафедри електронної техніки

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