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A Complete LTE Mathematical Framework for the Network Slice Planning of the EPC

机译:用于EPC网络切片规划的完整LTE数学框架

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摘要

5G is the next telecommunications standards that will enable the sharing of physical infrastructures to provision ultra short-latency applications, mobile broadband services, Internet of Things, etc. Network slicing is the virtualization technique that is expected to achieve that, as it can allow logical networks to run on top of a common physical infrastructure and ensure service level agreement requirements for different services and applications. In this vein, our paper proposes a novel and complete solution for planning network slices of the LTE EPC, tailored for the enhanced Mobile BroadBand use case. The solution defines a framework which consists of: i) an abstraction of the LTE workload generation process, ii) a compound traffic model, iii) performance models of the whole LTE network, and iv) an algorithm to jointly perform the resource dimensioning and network embedding. Our results show that the aggregated signaling generation is a Poisson process and the data traffic exhibits self-similarity and long-range-dependence features. The proposed performance models for the LTE network rely on these results. We formulate the joint optimization problem of resources dimensioning and embedding of a virtualized EPC and propose a heuristic to solve it. By using simulation tools, we validate the proper operation of our solution.
机译:5G是下一个电信标准,它将使物理基础设施的共享能够提供超短时延应用,移动宽带服务,物联网等。网络切片是一种有望实现这一目标的虚拟化技术,因为它可以实现逻辑网络运行在通用物理基础架构之上,并确保针对不同服务和应用程序的服务级别协议要求。有鉴于此,我们的论文提出了一种新颖而完整的解决方案,用于规划LTE EPC的网络切片,专为增强型Mobile BroadBand用例量身定制。该解决方案定义了一个框架,该框架包括:i)LTE工作负载生成过程的抽象; ii)复合流量模型; iii)整个LTE网络的性能模型; iv)共同执行资源标注和网络划分的算法嵌入。我们的结果表明,聚集的信号生成是一个泊松过程,数据流量表现出自相似性和长程依赖特征。 LTE网络的建议性能模型依赖于这些结果。我们提出了虚拟化EPC的资源规模和嵌入的联合优化问题,并提出了启发式算法来解决。通过使用仿真工具,我们验证了解决方案的正确运行。

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