
Real-time database of the subsystem of monitoring the process of growing vegetable products in the greenhouse
Author(s) -
M. Lendiel,
Taras Lendiel,
I. Bolbot
Publication year - 2021
Publication title -
energetika ì avtomatika
Language(s) - English
Resource type - Journals
ISSN - 2223-0858
DOI - 10.31548/energiya2021.04.128
Subject(s) - microclimate , greenhouse , process (computing) , computer science , software , environmental science , agricultural engineering , process engineering , database , engineering , operating system , geography , archaeology , horticulture , biology
When choosing systems for automatic control of the microclimate of the greenhouse should take into account the requirements that affect the process itself. In the process of growing different crops in the greenhouse, it is necessary to maintain the temperature and humidity according to the technology for the comfortable development of the plant, which will further affect the quality of the crop. An important factor is the fixation of all measured values for further processing of the results, and in paper and mostly unstructured form it is not so convenient to do. That is why information control systems provide constant fixation of measured values and maintain indicators that will be comfortable for a particular variety grown in the greenhouse. The aim of the study is to create software for an automated subsystem for monitoring technological parameters, which will allow in real time to obtain indicators of the microclimate of the greenhouse. To effectively manage the parameters of greenhouse cultivation and rapid processing of measured data, it is proposed to improve automated software management systems for creating databases. An automated subsystem for monitoring technological parameters has been developed, which allows to obtain real-time indicators of the greenhouse microclimate, control their values, process them statistically and demonstrate them to the staff. An application for reading and outputting measured information from the Arduino hardware platform has also been created. Key words: human-machine interface, monitoring, air temperature, microclimate, greenhouse