SDN - Architectural Enabler for Reliable Communication Over Millimeter-Wave 5G Networks

B. Sahoo, Chung-Wei Weng, Hung-Yu Wei
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引用次数: 2

Abstract

Millimeter-wave (mmWave) frequency bands offer a new frontier for next-generation wireless networks, popularly known as 5G, to enable multi-gigabit communication; however, the availability and reliability of mmWave signals are significantly limited due to its unfavorable propagation characteristics. Thus, mmWave networks rely on directional narrow-beam transmissions to overcome severe path-loss. To mitigate the impact of transmission-reception directionality and provide uninterrupted network services, ensuring the availability of mmWave transmission links is important. In this paper, we proposed a new flexible network architecture to provide efficient resource coordination among serving basestations during user mobility. The key idea of this holistic architecture is to exploit the software-defined networking (SDN) technology with mmWave communication to provide a flexible and resilient network architecture. Besides, this paper presents an efficient and seamless uncoordinated network operation to support reliable communication in highly-dynamic environments characterized by high density and mobility of wireless devices. To warrant high-reliability and guard against the potential radio link failure, we introduce a new transmission framework to ensure that there is at least one basestation is connected to the UE at all times. We validate the proposed transmission scheme through simulations.
SDN——毫米波5G网络可靠通信的架构推动者
毫米波(mmWave)频段为下一代无线网络(通常称为5G)提供了一个新的前沿,以实现多千兆通信;然而,由于其不利的传播特性,毫米波信号的可用性和可靠性受到极大限制。因此,毫米波网络依靠定向窄波束传输来克服严重的路径损耗。为了减轻传输-接收方向性的影响并提供不间断的网络服务,确保毫米波传输链路的可用性非常重要。本文提出了一种新的灵活的网络架构,以在用户移动过程中提供有效的服务基站之间的资源协调。这种整体架构的关键思想是利用软件定义网络(SDN)技术与毫米波通信,以提供灵活和弹性的网络架构。此外,本文还提出了一种高效、无缝的非协调网络运行方式,以支持无线设备高密度、移动性高动态环境下的可靠通信。为了保证高可靠性和防止潜在的无线电链路故障,我们引入了一个新的传输框架,以确保在任何时候都至少有一个基站连接到UE。我们通过仿真验证了所提出的传输方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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