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Fast Service Migration in 5G Trends and Scenarios

机译:在5G趋势和场景中快速服务迁移

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The need for faster and higher-capacity networks that can sustain modern, high-demanding applications has driven the development of 5G technology. Moreover, support for low-latency communication (1ms -10ms) is one of the main requirements of 5G systems. Multi-access Edge Computing (MEC) has been seen as a key component to attain the 5G objectives, since it allows hosting and executing critical services at the vicinity of users, thus reducing the latency to its minimum. Motivated by the evolution of real-time applications, we propose and evaluate two different mechanisms to improve the end-user experience by leveraging container-based live migration technologies. The first solution is aware of the users’ mobility patterns, while the other is oblivious to the users’ paths. Our results show approximately 50 percent reduction in downtime, which demonstrates the efficiency of the proposed solutions compared to prior works using similar underlying technology, i.e., LXC or Docker.
机译:对能够维持现代,高苛刻应用的更快和更高容量网络的需求推动了5G技术的发展。此外,对低延迟通信(1ms -10ms)的支持是5G系统的主要要求之一。多访问边缘计算(MEC)已被视为达到5G目标的关键组件,因为它允许在用户附近托管和执行关键服务,从而将延迟降低到其最小值。通过实时应用的演变,我们提出并评估了两种不同的机制,通过利用基于容器的实时迁移技术来改善最终用户体验。第一个解决方案了解用户的移动模式,而另一个解决方案是对用户路径的令人沮丧的。我们的结果显示停机时间约为50%,这表明了与使用类似底层技术,即LXC或Docker的先前作品相比提出的解决方案的效率。

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