Social-Aware Direct Device Connectivity for Peer-to-Peer Services in Advanced Mobile Networks
DOI:
https://doi.org/10.62643/Abstract
The rapid growth of mobile communication technologies and smart wireless devices has significantly increased the demand for high-speed, low-latency, and efficient communication systems in modern 4G and 5G networks. Traditional cellular communication architectures rely heavily on centralized base stations for data transmission, resulting in increased network congestion, higher latency, and excessive infrastructure load during high traffic conditions. Peer-to-Peer (P2P) communication using Device-toDevice (D2D) technology has emerged as an effective solution for improving communication efficiency by enabling direct communication between nearby mobile users without routing traffic through the cellular core network. However, conventional D2D communication systems mainly focus on physical proximity and channel conditions while ignoring the social relationships and behavioral patterns of users. To address these limitations, the proposed P2P Applications in 4G/5G Networks using D2D Communication based on Social Attributes of Users introduces an intelligent communication framework that utilizes social attributes such as user interests, mobility patterns, interaction frequency, trust relationships, and community structures for efficient D2D communication establishment. The proposed system integrates social-aware communication mechanisms, adaptive resource allocation, and optimized network management techniques to improve communication reliability, reduce latency, enhance spectral efficiency, and minimize network congestion. By utilizing advanced 4G/5G communication protocols and low-power mobile networking techniques, the proposed architecture supports efficient data sharing, content distribution, emergency communication, multimedia streaming, and intelligent mobile networking applications. The proposed system is highly suitable for smart cities, social networking platforms, disaster recovery communication, intelligent transportation systems, and next-generation mobile communication environments requiring scalable and efficient D2D networking solutions.
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