MODELS OF INTERACTION BETWEEN MICROCONTROLLER DEVICES AND CLOUD INFRASTRUCTURE IN DISTRIBUTED SYSTEMS

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Autore principale: Berezhnoy Andrey
Natura: Recurso digital
Lingua:inglese
Pubblicazione: Zenodo 2026
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author Berezhnoy Andrey
author_facet Berezhnoy Andrey
contents <p>The article examines modern models of interaction between microcontroller-based devices and cloud infrastructure within distributed systems. Architectural approaches such as Device-to-Cloud, Device-to-Gateway-toCloud, and Edge/Fog Computing are analyzed, defining the principles of integrating low-level devices with highlevel IT platforms. The impact of data transmission protocol selection (MQTT, HTTP/HTTPS, message brokers) on system reliability, security, and scalability is emphasized. Particular attention is given to issues of energy efficiency, fault tolerance, and data flow management. Examples of technology implementation in industrial and corporate IoT infrastructures are provided. The results of the study demonstrate the necessity of a comprehensive approach to architecture design that unites hardware, software, and cloud components. </p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18506887
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle MODELS OF INTERACTION BETWEEN MICROCONTROLLER DEVICES AND CLOUD INFRASTRUCTURE IN DISTRIBUTED SYSTEMS
Berezhnoy Andrey
microcontroller, distributed systems, Internet of Things, cloud technologies, Device-to-Cloud, Device-to-Gateway-to-Cloud, Edge/Fog Computing
<p>The article examines modern models of interaction between microcontroller-based devices and cloud infrastructure within distributed systems. Architectural approaches such as Device-to-Cloud, Device-to-Gateway-toCloud, and Edge/Fog Computing are analyzed, defining the principles of integrating low-level devices with highlevel IT platforms. The impact of data transmission protocol selection (MQTT, HTTP/HTTPS, message brokers) on system reliability, security, and scalability is emphasized. Particular attention is given to issues of energy efficiency, fault tolerance, and data flow management. Examples of technology implementation in industrial and corporate IoT infrastructures are provided. The results of the study demonstrate the necessity of a comprehensive approach to architecture design that unites hardware, software, and cloud components. </p>
title MODELS OF INTERACTION BETWEEN MICROCONTROLLER DEVICES AND CLOUD INFRASTRUCTURE IN DISTRIBUTED SYSTEMS
topic microcontroller, distributed systems, Internet of Things, cloud technologies, Device-to-Cloud, Device-to-Gateway-to-Cloud, Edge/Fog Computing
url https://doi.org/10.5281/zenodo.18506887