论文标题

移动和挥发性5G基础设施上的延迟和可靠性约束的VNF放置

Delay and reliability-constrained VNF placement on mobile and volatile 5G infrastructure

论文作者

Németh, Balázs, Molner, Nuria, Martín-Pérez, Jorge Jorge, Bernardos, Carlos J., de la Oliva, Antonio, Sonkoly, Balázs

论文摘要

对SDN和NFV技术的持续研究和工业开发有望在网络自动化和基础架构优化方面更高的灵活性。选择虚拟网络函数的位置是软件定义,基于虚拟化的下一代网络(例如5G及以后)的自动化和优化的核心问题。为自动驾驶汽车,工厂自动化,电子健康和云机器人技术提供的网络服务通常需要严格的延迟界限和可靠性约束,这些限制受其组成虚拟网络功能的位置影响。机器人,车辆和其他端设备提供了重要的功能,例如执行器,传感器和本地计算,对于某些服务至关重要。此外,这些设备不断移动,可能会失去网络连接或电池电量用完,这进一步挑战了在这个动态环境中的服务交付。这项工作可以解决移动性和电池限制。以及在挥发性网络上可靠,低延迟服务部署的时间方面和相互冲突的特征,其中移动计算节点充当云和边缘计算基础架构的扩展。该问题被提出为成本限制的虚拟网络功能放置优化,并提出了有效的启发式措施。通过模拟详细的现实世界情景,从各个方面对算法进行了广泛的评估。

The ongoing research and industrial exploitation of SDN and NFV technologies promise higher flexibility on network automation and infrastructure optimization. Choosing the location of Virtual Network Functions is a central problem in the automation and optimization of the software-defined, virtualization-based next generation of networks such as 5G and beyond. Network services provided for autonomous vehicles, factory automation, e-health and cloud robotics often require strict delay bounds and reliability constraints, which are influenced by the location of its composing Virtual Network Functions. Robots, vehicles and other end-devices provide significant capabilities such as actuators, sensors and local computation which are essential for some services. Moreover, these devices are continuously on the move and might lose network connection or run out of battery power, which further challenge service delivery in this dynamic environment. This work tackles the mobility, and battery restrictions; as well as the temporal aspects and conflicting traits of reliable, low latency service deployment over a volatile network, where mobile compute nodes act as an extension of the cloud and edge computing infrastructure. The problem is formulated as a cost-minimizing Virtual Network Function placement optimization and an efficient heuristic is proposed. The algorithms are extensively evaluated from various aspects by simulation on detailed real-world scenarios.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源