论文标题
通过物联网支持表征延迟和控制蜂窝MME的流量
Characterizing Delay and Control Traffic of the Cellular MME with IoT Support
论文作者
论文摘要
高级蜂窝网络的主要用例之一是大规模的互联网(MIOT)表示,即,将数据传输到蜂窝网络基础架构的大量物联网设备。为了使蜂窝MIOT成为现实,需要专门为支持物联网支持的数据传输和控制程序。因此,3GPP引入了控制平面蜂窝物联网优化,该优化预见了简化的承载实例化,而移动性管理实体(MME)处理控制和数据流量。因此,MME的性能变得至关重要,并且正确扩展其计算能力可以确定整个网络有效解决MIOT的能力。特别是,考虑虚拟化网络以及对计算资源进行有效分配的需求,随着MIOT交通负载的变化而表征MME性能至关重要。我们通过提出紧凑的封闭形式表达式来满足这种需求,将物联网源的数量与请求携带者的速率联系起来,以及与物联网数据产生的延迟的速率。我们表明,我们的分析在测试床实验的支持下并通过大规模模拟进行了验证,这代表了在虚拟化蜂窝核网络中做出有效缩放决策的宝贵工具。
One of the main use cases for advanced cellular networks is represented by massive Internet-of-things (MIoT), i.e., an enormous number of IoT devices that transmit data toward the cellular network infrastructure. To make cellular MIoT a reality, data transfer and control procedures specifically designed for the support of IoT are needed. For this reason, 3GPP has introduced the Control Plane Cellular IoT optimization, which foresees a simplified bearer instantiation, with the Mobility Management Entity (MME) handling both control and data traffic. The performance of the MME has therefore become critical, and properly scaling its computational capability can determine the ability of the whole network to tackle MIoT effectively. In particular, considering virtualized networks and the need for an efficient allocation of computing resources, it is paramount to characterize the MME performance as the MIoT traffic load changes. We address this need by presenting compact, closed-form expressions linking the number of IoT sources with the rate at which bearers are requested, and such a rate with the delay incurred by the IoT data. We show that our analysis, supported by testbed experiments and verified through large-scale simulations, represents a valuable tool to make effective scaling decisions in virtualized cellular core networks.