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A Proposal For Hybrid SDN C-RAN Architectures for Enhancing Control Signaling Under Mobility

机译:混合SDN C-RAN架构在移动性下增强控制信令的建议

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摘要

The vast growth in mobile data traffic requires future mobile network infrastructure to support fast overall growing mobile devices while improving the cost and the energy efficiencies. Many recent studies in this context have focused on proposing solutions for end-to-end architectural designs based onflexible allocations of functions, network function virtualization and software-defined implementations (SDN). It’s also of upmost importance to introduce a 5G End-to-End architecture that support low latency RAN with joint design of programmable and software’s driven networks that can adapt dynamically to thefluctuating traffic demands. This study contributes in this area by providing innovative joint Cloud-RAN-SDN network designs which are expected to reduce operational cost and overall control signaling load. The paper proposes two architectural schemes called C-RAN.C-MME and C-RAN.D-MME. We demonstrate the associated signaling load analysis, evaluate the performance and compare it against existing literature architectures. Evaluation results indicate a substantial improvement in terms of reducing the signaling load taking into account several network metrics. It’s worth mentioning that this study shows the impact of the proposed architectures on the signaling plane only, while their benefits for the transmission/data planes is considered in future work.
机译:移动数据流量的巨大增长要求未来的移动网络基础设施支持快速增长的整体移动设备,同时提高成本和能效。在此背景下,许多最新研究都集中在基于功能的灵活分配,网络功能虚拟化和软件定义的实现(SDN)的端到端体系结构设计解决方案的建议上。引入支持低延迟RAN的5G端到端架构以及可编程和软件驱动网络的联合设计,以动态地适应不断变化的流量需求,这也是最重要的。这项研究通过提供创新的Cloud-RAN-SDN联合网络设计在这一领域做出了贡献,有望降低运营成本和总体控制信令负载。本文提出了两种架构方案,分别称为C-RAN.C-MME和C-RAN.D-MME。我们演示了相关的信令负载分析,评估性能并将其与现有文献架构进行比较。评估结果表明,在考虑到多个网络指标的情况下,在减少信令负载方面有了实质性的改进。值得一提的是,这项研究仅显示了拟议架构对信令平面的影响,而在未来的工作中将考虑它们对传输/数据平面的好处。

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