We demonstrate a distributed and a centralized 4G/5G compliant approach to minimize signaling and latency related to user mobility in cellular networks. This is crucial due to the densification of networks and the additional signaling introduced by the new 5G service based architecture. By exploiting standardized protocols, our solutions dynamically reorganize the association between nodes in Radio Access Network (RAN) and the core. We validated the proposed approaches using real user mobility datasets. Our results show that both our distributed and centralized solutions significantly reduce the signaling between core and RAN compared to the traditional approach based on geographical proximity. As a result, both approaches significantly reduce the average handover procedure processing time. Moreover, by relying on locally available information, the distributed approach can quickly adapt to changes in the user movement patterns as they happen.
翻译:我们展示了一种分布式和集中式的4G/5G兼容方法,以尽量减少与移动电话网络用户流动有关的信号和延迟性,这一点至关重要,因为网络密度和基于5G服务的新结构引入了额外的信号。通过利用标准化协议,我们的解决办法动态地重组了无线电接入网络和核心节点之间的联系。我们用真正的用户流动数据集验证了拟议方法。我们的结果显示,我们分布式和集中式的解决方案与基于地理相近的传统方法相比,大大减少了核心与RAN之间的信号和延迟性。因此,这两种方法都大大缩短了平均移交程序处理时间。此外,通过依靠当地现有的信息,分布式方法可以快速适应用户流动模式的变化。