DEVELOPMENT OF A PROTOTYPE SYSTEM OF AUTOMATED ENVIRONMENTAL MONITORING OF WASTEWATER CONDITIONS

Authors

DOI:

https://doi.org/10.31891/2219-9365-2023-76-15

Keywords:

information systems, microcontroller, IoT, environmental monitoring system, automated control, software

Abstract

Water monitoring is a system of constant observation, collection, processing, transmission, preservation and analysis of information about the state of water resources, forecasting its changes and developing scientifically based recommendations for making decisions on preventing negative changes in water quality and complying with environmental safety requirements.

In addition, monitoring is a key element in assessing the ecological status of aquatic ecosystems. It detects changes in water quality, the impact of human activities and climate change on ecosystems. This is important for the preservation of biological diversity, ensuring the stability of the ecosystem and planning effective measures for the protection and restoration of water resources.

The article examines the peculiarities of the application of microprocessors for the technology of remote monitoring of the state of water quality in real time. The software for the development of an effective ecological monitoring algorithm was analyzed, and the principles of its operation were also determined. The process of introducing the developed system into the general infrastructure of managing the meteorological situation network is detailed.

A system of operational response to the situation regarding the water level, its quality, costs and temperature regime has been developed. This allows you to monitor dynamics and identify potential problems, and the format of aggregated data is suitable for further analysis. The proposed tools can be used in maintenance systems by smart cities.

Published

2023-11-30

How to Cite

ZASHCHEPKINA Н., & PYROHOV А. (2023). DEVELOPMENT OF A PROTOTYPE SYSTEM OF AUTOMATED ENVIRONMENTAL MONITORING OF WASTEWATER CONDITIONS. MEASURING AND COMPUTING DEVICES IN TECHNOLOGICAL PROCESSES, (4), 121–126. https://doi.org/10.31891/2219-9365-2023-76-15