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Network slicing - enabled RAN management for 5G: Cross layer control based on SDN and SDR

机译:网络切片-为5G启用RAN管理:基于SDN和SDR的跨层控制

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Having already entered the initial phase of the 5th generation networks (5G) era, the network ecosystems have already begun comprising a plethora of coexisting 3GPP and non-3GGP Radio Access Technologies (RATs). Deployment scenarios envision a multi-layer use of macro, micro and femto-cells, where multi mode end devices, supporting different applications, are served by heterogeneous access technologies. At the same time, this heterogeneous environment results in an abstract pool of resources, moving away from the traditional cell concept and exposing the network administrator with the collective resources in time, frequency, and space. An imperative need is thus created, to obtain an overview of the network and radio conditions in order to respond in an optimal way. The concepts of Software Defined Networking (SDN) and Software Defined Radio (SDR), when applied in a coordinated and sophisticated manner, may prove of utmost importance towards addressing the aforementioned challenges. The concept of network slicing-that enables the creation of several virtual networks with diverse characteristics, on top of common infrastructure-further reinforces the flexibility and dynamicity of the network. To this end, we present and evaluate a Cross Layer Controller (CLC), which acts on top of well-established SDN and SDR technologies, and monitors in real-time the conditions in the radio environment, as well as the transport network traffic, in a unified way; based on this dynamic input, CLC enforces sophisticated, end-to-end resource allocation policies and pairing mechanisms between network slices from different network segments, highlighting thus, the feature of cross layer resource management and dynamic adaptation. The experimentation results demonstrate the considerable gains acquired from the proposed solution. (C) 2019 Elsevier B.V. All rights reserved.
机译:网络生态系统已经进入了第五代网络(5G)时代的初始阶段,已经开始包含大量共存的3GPP和非3GGP无线电接入技术(RAT)。部署方案设想了宏,微型和毫微微小区的多层使用,其中支持不同应用程序的多模式终端设备由异构访问技术提供服务。同时,这种异构环境导致抽象的资源池,从而摆脱了传统的小区概念,并向网络管理员暴露了时间,频率和空间上的集体资源。因此,迫切需要获得网络和无线电状况的概况,以便以最佳方式做出响应。当以协调和复杂的方式应用软件定义网络(SDN)和软件定义无线电(SDR)的概念时,可能证明对解决上述挑战至关重要。网络切片的概念-可以在通用基础结构之上创建具有不同特性的多个虚拟网络-进一步增强了网络的灵活性和动态性。为此,我们提出并评估了跨层控制器(CLC),该控制器基于成熟的SDN和SDR技术,并实时监视无线电环境中的状况以及传输网络流量,以统一的方式基于此动态输入,CLC在来自不同网段的网络切片之间实施复杂的端到端资源分配策略和配对机制,从而突显了跨层资源管理和动态适应的功能。实验结果证明了从提出的解决方案中获得了可观的收益。 (C)2019 Elsevier B.V.保留所有权利。

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