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Enhanced Handover Signaling through Integrated MME-SDN Controller Solution

机译:通过集成的MME-SDN控制器解决方案增强了切换信令

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The future wireless networks are expected to be extremely dense and heterogeneous, with the users experiencing multi-connectivity through the multiple available radio access technologies (RATs). These prevalent characteristics, along with the strict QoS requirements, renders the handover (HO) process optimization as a critical objective for future networks. Along side the evolving network characteristics and methodologies, an evolving network architecture needs to be considered as well. Such evolution should not only facilitate HO process enhancement, i.e., reduction in HO delay and signaling, but it should also allow for a smooth transition from current to future wireless networks. Hence, in this work we firstly present an evolutionary core network entity called the Integrated MME-SDN Controller and the associated network architecture. The proposed architecture provides a migratory path for the existing 3GPP cellular architectures towards the 5G networks. Next, we discuss the benefits and challenges of such an architectural approach, with one of the benefits being a manageable CAPEX for the network operators through its transitional nature. Subsequently, utilizing the aforementioned proposed architecture, we present the handover process enhancement for the current 3GPP defined HO processes. We quantify the improvements achieved in terms of latency, transmission and processing cost for the different 3GPP HO processes. We also show that the proposed HO mechanism leads to a significant reduction in latency and signaling for certain types of HOs which, as a consequence, will critically benefit any dense and heterogeneous wireless system, such as 5G.
机译:随着用户通过多种可用的无线接入技术(RAT)体验到多连接性,预期未来的无线网络将非常密集和异构。这些普遍的特征以及严格的QoS要求使切换(HO)过程优化成为未来网络的关键目标。除了不断发展的网络特性和方法论外,还需要考虑不断发展的网络体系结构。这样的演进不仅应该促进HO处理的增强,即减少HO延迟和信令,而且还应该允许从当前的无线网络到未来的无线网络的平滑过渡。因此,在这项工作中,我们首先提出了一个称为集成MME-SDN控制器的演化核心网络实体和相关的网络体系结构。提出的体系结构为现有3GPP蜂窝体系结构向5G网络的迁移提供了路径。接下来,我们讨论这种架构方法的好处和挑战,其中一项好处是通过其过渡性为网络运营商提供可管理的CAPEX。随后,利用上述提出的架构,我们提出了针对当前3GPP定义的HO过程的切换过程增强。我们针对不同的3GPP HO流程量化了在延迟,传输和处理成本方面的改进。我们还表明,对于某些类型的HO,建议的HO机制可显着减少等待时间和信令,因此,它将极大地受益于任何密集且异构的无线系统,例如5G。

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