Convergence of the Internet of Things and situation management systems.
DOI:
https://doi.org/10.34121/1028-9763-2023-3-89-103Keywords:
situational system, Internet of Things, cyber-convergent system, heterogeneous networks, ситуаційна система, інтернет речей, кіберконвергентна система, гетерогенні мережіAbstract
Quick and accurate provision of information in the processes of situational management acquires special importance in the critical areas of application – the prevention and elimination of the consequences of catastrophic events, the management of military operations, medical activities, the management of energy systems, etc. The goals and objectives of activities in these areas also determine the specifics of building appropriate situation management systems for them. The functioning of such systems is based on obtaining accurate and current information about the environment in which situational management is carried out. The convergence of situation management systems with the means of wireless sensor networks (Wireless Sensor Networks, WSN) and the Internet of Things (IoT) ensures obtaining such information. The article analyzes the means of the Internet of Things from the point of view of their ability to be combined in situation management systems to solve management problems in various spheres of activity. The construction features and advantages of using situational systems based on IoT in various spheres of activity are considered. The convergence of IoT in situational systems of various types requires the solution of IoT-typical tasks related to the organization of a heterogeneous network environment with controlled energy consumption and the need to process large volumes of data. The paper demonstrates that the scope of application determines the specific requirements for the construction of situation management systems, and in each specific case the system of requirements is focused on the support of a critical requirement. One of the main problems of the convergence of IoT and situation management systems is the difficulty of standardizing the operating environment. The multiplicity and variety of options for possible solutions in the development of such systems determine the need for the use of intelligent technologies for the development of systems with the use of artificial intelligence and knowledge models of the target subject area.References
Kovalenko O. Information Taxonomy and Ontology for Situational Management. IEEE 13th International Scientific and Technical Conference on Computer Sciences and Information Technologies. CSIT 2018 Proc. 2018. Vol. 2, N 8526723. P. 94–97. DOI: 10.1109/STC-CSIT.2018.8526723.
Jakobson G., Buford J., Lewis L. Situation Management: Basic Concepts and Approaches / еds. V.V. Popovich, M. Schrenk, K.V. Korolenko. Information Fusion and Geographic Information Systems. LNG&C. Heidelberg: Springer, 2007. Vol. XIV. P. 18–33.
Kovalenko O. Systems Convergence for Situational Control and Decision Making in Distributed Environments. IEEE 16th International Conference on Advanced Trends in Radioelectronics, Telecommunications and Computer Engineering (TCSET), 2022. Р. 344–347. DOI: 10.1109/TCSET55632.2022.9767006.
Kovalenko O. Knowledge Driven Cyber-Convergent Systems Based on Situational Agents. IEEE 17th International Conference on Computer Sciences and Information Technologies (CSIT). 2022. P. 243–246. DOI: 10.1109/CSIT56902.2022.10000762.
Коваленко О.Є. Онтологія та модель трансформації інформації в ситуаційних агентних системах. Електронне моделювання. 2020. Т. 42, № 5. С. 3–23. DOI: https://doi.org/10.15407/emodel.42.05.005.
Ma J., Ning H., Huang R., Liu H., Yang L.T., Chen J., Min G. Cybermatics: A holistic field for systematic study of cyber-enabled new worlds. IEEE Access. 2015. Vol. 3. P. 2270–2280.
Zhou X., Zomaya A.Y., Li W., Ruchkin I. Cybermatics: Advanced Strategy and Technology for Cyber-Enabled Systems and Applications. Future Generation Computer Systems. 2018. Vol. 79. P. 350–353.
Коваленко О.Є. Принципи інженерії ситуаційних систем. Математичні машини і системи. 2019. № 4. С. 65–78. DOI: 10.34121/1028-9763-2019-4-65-78.
Situational Analysis. URL: https://www.iaea.org/resources/nuclear-communicators-toolbox/methods/planning/situational-analysis.
Wireless Sensor Network Architecture and Its Applications. URL: https://www.elprocus.com/architecture-of-wireless-sensor-network-and-applications/.
Sadoughi F., Behmanesh A., Sayfouri N. Internet of things in medicine: a systematic mapping study. J. Biomed. Inform. 2020. Vol. 103. P. 103383. URL: https://doi.org/10.1016/j.jbi.2020.103383.
Paranjape K., Schinkel M., Nanayakkara P. Short keynote paper:mainstreaming personalized healthcare-transforming healthcare through new era of artificial intelligence. IEEE J. Biomed. Health Inform. 2020. N 1. URL: https://doi.org/10.1109/JBHI.2020.2970807.
Ergen O., Belcastro K.D. AI Driven Advanced Internet Of Things (Iotx2): The Future Seems Irreversibly Connected in Medicine. Anatol. J. Cardiol. 2019. N 22. P. 15–17. URL: https://doi.org/10.14744/AnatolJCardiol.2019.73466.
Kumar B., Al Ismaili M. Incorporating Internet of Things Applications in Healthcare. Current Overview on Science and Technology Research. 2022. Vol. 1. P. 37–49. URL: https://doi.org/10.9734/bpi/costr/v1/3485A.
Kovalenko O., Velev D. Big data aggregation in disasters risk management systems. 2020 6th International Conference on Advances in Environment Research. IOP Conf. Series: Earth and Environmental Science. 2021. Vol. 776. P. 012007. IOP Publishing. DOI: 10.1088/1755-1315/776/1/012007.
Ray P.P., Mukherjee M., Shu L. Internet of Things for Disaster Management: State-of-the-Art and Prospects. IEEE Access. 2017. Vol. 5. P. 18818–18835. DOI: 10.1109/ACCESS.2017.2752174.
Farooq M.J., Zhu Q. On the Secure and Reconfigurable Multi-Layer Network Design for Critical Information Dissemination in the Internet of Battlefield Things (IoBT). IEEE Transactions on Wireless Communications. 2018. Vol. 17, N 4. P. 2618–2632. DOI: 10.1109/TWC.2018.2799860.
Tao W., Zhao L., Wang G., Liang R. Review of the internet of things communication technologies in smart agriculture and challenges. Computers and Electronics in Agriculture. 2021. N 189. P. 106352.
ІOT in Agriculture: 9 Technology Use Cases for Smart Farming (and Challenges to Consider). URL: https://easternpeak.com/blog/iot-in-agriculture-technology-use-cases-for-smart-farming-and-challenges-to-consider/.
Connolly D., Lund H., Mathiesen B. Smart Energy Europe: The technical and economic impact of one potential 100% renewable energy scenario for the European Union. Renew. Sustain. Energy Rev. 2016. Vol. 60. P. 1634–1653.
Hossein Motlagh N, Mohammadrezaei M, Hunt J, Zakeri B. Internet of Things (IoT) and the Energy Sector. Energies. 2020. Vol. 13 (2). P. 494. URL: https://doi.org/10.3390/en13020494.
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