5G毫米波异构网络中无线资源调度的D2D通信

A. Rosas
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引用次数: 0

摘要

-由于无线网络服务、应用和技术的密度呈爆炸式增长,优化功耗和无线电资源管理并减少干扰可能成为未来第五代(5G)异构网络(HetNets)的关键问题。在异构5G网络中实现的小型基站毫米波(mm-wave)技术是一种实用的解决方案,可用于处理多种网络基础设施、大规模连接设备和具有千兆接入数据速率的业务。在本文中,我们为异构5G毫米波网络中的无线电接入、回程(BH)和设备到设备(D2D)通信链路提出了一种联合最优功率和并发无线电资源传输调度。此外,对于视距(LOS)和非视距(NLOS)传输,该方案允许不同的干扰和非干扰链路同时传输。最后,综合仿真结果表明,该方案在无线资源利用率和平均用户吞吐量方面均有显著提高。
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D2D communication with Radio resources scheduling in 5G Millimeter wave Heterogeneous Networks
— Due to the explosive growth in the density of wireless network services, applications, and technologies, optimal power consumption and radio resource management with interference mitigation can be emerged as a critical issues for future fifth-generation (5G) heterogeneous networks (HetNets). Millimeter Wave (mm-wave) technology with small cells implemented in heterogeneous 5G networks is deployed as a practical solution to deal with diverse network infrastructures, massively linked devices, and services with multi-gigabit access data rates. In this paper, we propose a jointly optimal power and concurrent radio resource transmission schedule for radio access, backhaul (BH) and Device to Device (D2D) communication links in heterogeneous 5G mmWave networks. Furthermore, for both Line Of Sight (LOS) and Non Line Of Sight (NLOS) transmission, the scheme allows different interfering and non-interfering links to transmit concurrently. Finally, Comprehensive simulations demonstrate that the proposed scheme can achieves significant improvement in terms of radio resources utilization and average user throughput.
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