D2D Communication in a 5G mm-Wave Cellular Network for Wireless Sensor Networks

计算机科学 衰减 带宽(计算) 服务质量 无线传感器网络 蜂窝网络 半径 计算机网络 无线 吞吐量 发射机功率输出 性能指标 公制(单位) 无线网络 电子工程 实时计算 工程类 电信 物理 经济 频道(广播) 管理 光学 发射机 运营管理
作者
Subhra Sankha Sarma,Atul Sachan,Ranjay Hazra,Fazal Ahmed Talukdar,Amrit Mukherjee,Pushpita Chatterjee,Waleed S. Alnumay
出处
期刊:IEEE Sensors Journal [IEEE Sensors Council]
卷期号:24 (5): 5512-5521
标识
DOI:10.1109/jsen.2023.3300586
摘要

Wireless Sensor Networks (WSN), one of the urban sensing technologies, suffer from issues such as, data security, data offloading, bulk data storage and network coverage which in turn affects urban sensing. Device to Device (D2D) communication appears to be the most promising candidate for mitigating the problems faced by WSN. Enabling D2D communication in the mm-Wave network enhances throughput and bandwidth. However, it suffers from signal degradation due to higher pathloss attenuation. Thus, the proposed scheme applies dynamic mode selection criteria for efficient D2D communication in a 5G mm-Wave cellular network (CN). The radius of coverage of D2D users is derived for switching of the modes, i.e. from inner to outer. The outer mode switching occurs when the D2Ds suffer from extensive pathloss attenuation or with increase in coverage radius. Furthermore, power optimization is done to obtain optimal D2D transmit power thereby, enhancing the data rate. This problem is solved by employing Lagrangian dual optimization technique. The performance metric, coverage probability is also derived which depicts the superiority of the proposed scheme in terms of Quality-of-Service (QoS) at a higher pathloss attenuation. Simulation results prove the efficacy of the proposed scheme. Finally, the proposed scheme is compared with the state-of-the-art schemes which further validates the superiority of the proposed scheme.

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