直接:分布式跨域资源编排在蜂窝边缘计算

Qiang Liu, T. Han
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引用次数: 20

摘要

网络切片和边缘计算是实现5G垂直行业计算密集型应用的关键技术。我们将具有边缘计算能力的蜂窝网络定义为蜂窝边缘计算。本文研究了蜂窝边缘计算中动态网络切片的跨域资源编排解决方案。基础研究的挑战来自于难以在具有多个基站和分布式边缘服务器的网络中对来自多个技术领域的切片性能和资源之间的关系进行建模。为了应对这一挑战,我们开发了一种分布式跨域资源编排(DIRECT)协议,该协议优化了跨域资源编排,同时提供了网络片之间的性能和功能隔离。DIRECT的主要组成部分是将ADMM方法和一种新的学习辅助优化方法相结合而设计的分布式跨域资源编排算法。提出的资源编排算法在不需要网络切片性能模型的情况下,可以有效地对多域资源进行编排。我们在基于OpenAirInterface LTE和CUDA GPU计算平台设计的小规模蜂窝边缘计算原型中开发并实现了DIRECT协议。通过实验和网络仿真验证了DIRECT的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DIRECT: Distributed Cross-Domain Resource Orchestration in Cellular Edge Computing
Network slicing and edge computing are key technologies to enable compute-intensive applications for vertical industries in 5G. We define cellular networks with edge computing capabilities as cellular edge computing. In this paper, we study the cross-domain resource orchestration solution for dynamic network slicing in cellular edge computing. The fundamental research challenge is from the difficulty in modeling the relationship between the slice performance and resources from multiple technical domains across the network with many base stations and distributed edge servers. To address this challenge, we develop a distributed cross-domain resource orchestration (DIRECT) protocol which optimizes the cross-domain resource orchestration while providing the performance and functional isolations among network slices. The main component of DIRECT is a distributed cross-domain resource orchestration algorithm which is designed by integrating the ADMM method and a new learning-assisted optimization approach. The proposed resource orchestration algorithm efficiently orchestrates multi-domain resources without requiring the performance model of the network slices. We develop and implement the DIRECT protocol in a small-scale prototype of cellular edge computing which is designed based on OpenAirInterface LTE and CUDA GPU computing platforms. The performance of DIRECT is validated through both experiments and network simulations.
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