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Pedagogy and Psychology of Sport

Information system for dynamic monitoring of physical factors of the natural environment
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Information system for dynamic monitoring of physical factors of the natural environment

Authors

  • Yurii Dobrovolskyi Yuriy Fedkovych Chernivtsi National University, Kotsyubynsky 2, Chernivtsi, 58012, Ukraine https://orcid.org/0000-0003-0626-0594
  • Inessa Tanashchyshena Yuriy Fedkovych Chernivtsi National University, Kotsyubynsky 2, Chernivtsi, 58012, Ukraine https://orcid.org/0009-0008-5119-8420

DOI:

https://doi.org/10.12775/PPS.2026.30.71298

Keywords

information system, monitoring, environment, API, haversines, data integration, software

Abstract

Physical environmental factors, namely ecological, astronomical, tectonic, significantly affect it and create a burden on both nature in general and human communities in particular. Therefore, monitoring such impacts is critically important for their prediction in order to preserve human health and economic infrastructure. Due to this, the need for integrated information systems capable of appropriate monitoring and forecasting of critical events that affect the environment is growing. Combining physical, astronomical and tectonic parameters in a single information platform makes it possible to create a comprehensive approach to data analysis and visualization. The work is devoted to the development of an information system for dynamic monitoring of physical environmental factors, as well as factors of astronomical and tectonic origin. The main innovation of the work is the combination of these factors for display on web resources and the use of the haversine formula for analyzing geographic data, which increases the accuracy of calculations. The system integrates data from APIs (OpenUV, OpenWeatherMap, NASA, IRIS-WS, AirVisual), providing convenient access to information on ultraviolet radiation, temperature, humidity, atmospheric pressure, air quality, magnetic storms and earthquake amplitude. The developed web application is based on a modern technology stack (Java, Spring, Angular, PrimeNG), which ensures high performance and ease of use. The work analyzed existing information systems, justified the choice of technologies, implemented the system architecture, and tested its performance and reliability in a test environment. The results obtained indicate the prospects of combining physical, astronomical, and tectonic factors to create integrated information systems. This opens up new opportunities for improving environmental monitoring and preventing potential threats.

References

[1] National Oceanic and Atmospheric Administration. URL: https://www.nhc.noaa.gov/ (Accessed on April 23, 2026).

[2] The Power of Smart City Platforms URL: https://www.smartcityss.com/resources/the-power-of-smart-city-platforms-integrating-data-and-services], AirVisual [AirVisual. URL: https://www.saveecobot.com/platform/airvisual (Accessed on April 23, 2026).

[3] URad Monitor. Real-time Air Quality Sensor Network. URL: https://aqicn.org/network/urad/ (Accessed on April 23, 2026).

[4] Environmental Health: From Global to Local, 3rd Edition. 2016. URL: https://www.wiley.com/en-fr/Environmental+Health%3A+From+Global+to+Local%2C+3rd+Edition-p-9781118984765#download-product-flyer (Accessed on April 23, 2026).

[5] Environmental Hazards: Assessing Risk and Reducing Disaster. 2023. URL: https://www.yakaboo.ua/environmental-hazards-assessing-risk-and-reducing-disaster.html?srsltid=AfmBOoq-k18J1LUxF466VMOi5fFw5lXTDh1QCEZN4f7Mn77NtgQ0pxOK (Accessed on April 23, 2026).

[6] Raymond Poon. Harmful Natural Chemicals and Radiation in the Environment. URL: https://www.worldscientific.com/worldscibooks/10.1142/8535?srsltid=AfmBOookg3GRBBBQMmA8RySLcg4wYzDv1MdWEV4zX3uMdNiJMSZRM5yt#t=aboutBook (Accessed on April 23, 2026).

[7] OpenWeatherMap API Documentation. URL: https://openweathermap.org/api (Accessed on April 23, 2026)..

[8] OpenUV API Documentation. URL: https://www.openuv.io/ (Accessed on April 23, 2026).

[9] Java Platform Documentation (Oracle). URL: https://docs.oracle.com/javase/ (Accessed on April 23, 2026).

[10] PrimeNG Documentation. URL: https://primefaces.org/primeng/ (Accessed on April 23, 2026).

[11] Spring Framework Documentation. URL: https://spring.io/projects/spring-framework (Accessed on April 23, 2026).

[12] Gemmo.AI Environmental Monitoring Platform. URL: https://gemmo.ai/ (Accessed on April 23, 2026).

Pedagogy and Psychology of Sport

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Published

2026-04-27

How to Cite

1.
DOBROVOLSKYI, Yurii and TANASHCHYSHENA, Inessa. Information system for dynamic monitoring of physical factors of the natural environment. Pedagogy and Psychology of Sport. Online. 27 April 2026. Vol. 30, p. 71298. [Accessed 17 September 2026]. DOI 10.12775/PPS.2026.30.71298.
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Issue

Vol. 30 (2026)

Section

Medical Sciences

License

Copyright (c) 2026 Yurii Dobrovolskyi, Inessa Tanashchyshena

Creative Commons License

This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.

The periodical offers access to content in the Open Access system under the Creative Commons Attribution-NonCommercial-ShareAlike 4.0

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