D2D enabled communication system structure based on software defined networking for 5G network

A. Muthanna, Abdelhamied A. Ateya, M. Balushi, R. Kirichek
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引用次数: 10

Abstract

In the device-device communication paradigm (D2D) in 5G networks, an efficient infrastructure is created, allowing the use of various smart urban applications, such as public safety. In future smart cities, the tight deployment of wireless sensor networks can be integrated into 5G networks using D2D communications. D2D communication provides direct communication between neighbouring user devices using cellular or special communication channels, thereby improving spectrum utilization, system capacity and network energy efficiency. This paper discusses the hierarchical communication architecture of D2D, in which the centralized Software-Defined Network controller (SDN) interacts with the Cloud Head (CH) to reduce the number of requested LTE communication channels, thereby improving power consumption. This paper considers the reliability and potential of the architecture, presenting a public safety scenario when occurs any disaster, disconnecting a part of the network.
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5G网络基于软件定义组网的D2D使能通信系统结构
在5G网络中的设备-设备通信范式(D2D)中,创建了高效的基础设施,允许使用各种智能城市应用,例如公共安全。在未来的智慧城市中,无线传感器网络的紧密部署可以通过D2D通信集成到5G网络中。D2D通信使用蜂窝或专用通信信道在相邻用户设备之间提供直接通信,从而提高频谱利用率、系统容量和网络能源效率。本文讨论了D2D的分层通信架构,其中集中式软件定义网络控制器(SDN)与云头(CH)交互,以减少请求的LTE通信通道数量,从而提高功耗。本文考虑了该体系结构的可靠性和潜力,提出了在发生任何灾难时断开部分网络的公共安全场景。
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