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Dynamic Network Based Analytical Model for Implementing Information Centric Networking in 5G Communication Systems

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Zenodo2025-07-23 更新2026-05-26 收录
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Information-centric wireless computing (ICWC) enhances 5G communication by enabling effective content distribution, decreasing network load, supporting flexible resource allocation, improving scalability, simplifying IoT and edge computing, and enabling content-aware services. Information-Centric Networking (ICN) involves creating and utilizing a specific model to examine its integration within 5G communication systems. 5G technology will enable real-time communications and seamless information management across all connected devices. Information-centric networking has emerged as a powerful facilitator for delivering scalable and realistic real-time applications regarding internet architecture, mobile infrastructures, and other communication devices. The widespread use of 5G applications necessitates a content delivery infrastructure that offers low latency, dependability, portability, and scalability. Traditional systems, which consider only mobile device transmission rather than fixed nodes, are inadequate due to their host-oriented approach and cannot meet all these objectives. For communication to be based purely on information resource IDs rather than the place or location of the resource, a new Internet paradigm, known as ICN, is utilized. The issues above can be remedied by applying ICN principles. Because latency is the backbone of 5G networks, the goal is to enable minimal services, such as network design, waiting time, automated systems, and faster dissemination. To analyze data distribution in a network, we present an analytical technique termed Information-Centric Networking Analytical Dynamic (ICN-AD) that utilizes a Dynamic population, considering a wide range of variables, such as user density, communication speed, and the number of fixed nodes, to implement ICN for 5G communications. The suggested model allows us to calculate the diffusion time, transmission distance, and waiting time in closed form. Experiments have demonstrated the impact of high-speed and narrowband wireless communication technologies on data transmission in 5G networks. Results show a notable transmission rate of approximately 91%, even with a large number of users. Chance contacts between wireless nodes spread most data with the minimum latency value (45 ms).

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Zenodo
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2025-07-23
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