最小化业务接入延迟:异构5G架构前传MEC应用

N. Makris, Virgilios Passas, Christos Nanis, T. Korakis
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引用次数: 12

摘要

多址边缘计算(MEC)是一种通过部署和操作靠近网络边缘的数据中心资源来最小化用户到服务路径延迟的方法。5G移动网络服务的引入,以及通过符合Cloud-RAN范式的分解基站提供服务,通过提供更接近网络接入边缘的服务部署,可以重新定义传统的边缘计算。在这项工作中,我们利用了一个分解的异构5G基础设施,符合5G新无线电(NR)规范,并提出了一个方案,使服务更接近边缘,接近雾计算的概念。我们为OpenAirInterface平台开发了一种方案,该方案允许服务在承载网络访问的无线电服务的机器附近或之上执行。通过利用在小区中集成异构无线电资源的特性,我们能够创建一个控制器接口,用于选择用于从MEC服务角度为网络的每个用户服务的最佳无线电接入技术。我们在一个真实的测试平台设置中评估我们的解决方案,并通过使用自适应视频流测量我们的解决方案的性能相关指标。我们的结果表明,当适当选择接入技术时,向最终用户提供的视频质量可提高80%。
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On Minimizing Service Access Latency: Employing MEC on the Fronthaul of Heterogeneous 5G Architectures
Multiple-access Edge Computing (MEC) has been proposed as a means to minimize the user to service path latency, by deploying and operating datacenter resources close to the network edge. The introduction of 5G mobile network services, and their provisioning through disaggregated base stations complying with the Cloud-RAN paradigm, allows the redefinition of the traditional Edge Computing by offering deployment of services even closer to the network access edge. In this work, we leverage a disaggregated heterogeneous 5G infrastructure, compliant with the 5G New Radio (NR) specifications, and present a scheme for placing the services even closer to the Edge, close to the concept of fog computing. We develop a scheme for the OpenAirInterface platform that allows services to be executed close or over the machines hosting the radio services for the network access. By exploiting features for integrating heterogeneous radio resources in the cell, we are able to create a controller interface for selecting the optimal radio access technology used to serve each user of the network from the MEC service perspective. We evaluate our solution in a real testbed setup, and measure performance related indicators for our solution by using adaptive video streaming. Our results illustrate up to 80% better video qualities delivered to the end user when appropriately selecting the access technology.
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