面向具有多片功能的下一代互联网的最佳云资源管理框架

IF 2.8 Q2 COMPUTER SCIENCE, INFORMATION SYSTEMS
Future Internet Pub Date : 2023-10-19 DOI:10.3390/fi15100343
Salman Ali AlQahtani
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引用次数: 0

摘要

随着5G网络的出现,对改进的移动宽带、大规模机器类型通信以及超可靠、低延迟通信的需求激增,从而实现了广泛的新应用。5G网络中的一项关键使能技术是网络切片,它允许在统一的物理网络上创建多个虚拟网络以支持各种用例。然而,5G云-无线接入网(C-RAN)中有限的无线资源可用性和不断增长的数据流量需要有效的资源分配算法来确保每个网络片的服务质量(QoS)。本文提出了一种5G C-RAN的自适应分片分配(ASA)机制,旨在动态分配资源,适应不断变化的网络条件和流量延迟容忍。ASA系统在满足每个分片的QoS要求的同时,结合了分片准入控制和动态资源分配,使网络资源效率最大化。通过大量的模拟,我们从资源消耗、平均等待时间和总阻塞概率方面评估了ASA系统的性能。与流行的静态片分配(SSA)方法的比较分析表明,ASA系统在实现系统资源的均衡利用、保持片隔离和提供QoS方面具有优势。研究结果强调了拟议的ASA机制在优化5G C-RAN背景下未来互联网连接方面的有效性,为增强网络性能和改善用户体验铺平了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Towards an Optimal Cloud-Based Resource Management Framework for Next-Generation Internet with Multi-Slice Capabilities
With the advent of 5G networks, the demand for improved mobile broadband, massive machine-type communication, and ultra-reliable, low-latency communication has surged, enabling a wide array of new applications. A key enabling technology in 5G networks is network slicing, which allows the creation of multiple virtual networks to support various use cases on a unified physical network. However, the limited availability of radio resources in the 5G cloud-Radio Access Network (C-RAN) and the ever-increasing data traffic volume necessitate efficient resource allocation algorithms to ensure quality of service (QoS) for each network slice. This paper proposes an Adaptive Slice Allocation (ASA) mechanism for the 5G C-RAN, designed to dynamically allocate resources and adapt to changing network conditions and traffic delay tolerances. The ASA system incorporates slice admission control and dynamic resource allocation to maximize network resource efficiency while meeting the QoS requirements of each slice. Through extensive simulations, we evaluate the ASA system’s performance in terms of resource consumption, average waiting time, and total blocking probability. Comparative analysis with a popular static slice allocation (SSA) approach demonstrates the superiority of the ASA system in achieving a balanced utilization of system resources, maintaining slice isolation, and provisioning QoS. The results highlight the effectiveness of the proposed ASA mechanism in optimizing future internet connectivity within the context of 5G C-RAN, paving the way for enhanced network performance and improved user experiences.
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来源期刊
Future Internet
Future Internet Computer Science-Computer Networks and Communications
CiteScore
7.10
自引率
5.90%
发文量
303
审稿时长
11 weeks
期刊介绍: Future Internet is a scholarly open access journal which provides an advanced forum for science and research concerned with evolution of Internet technologies and related smart systems for “Net-Living” development. The general reference subject is therefore the evolution towards the future internet ecosystem, which is feeding a continuous, intensive, artificial transformation of the lived environment, for a widespread and significant improvement of well-being in all spheres of human life (private, public, professional). Included topics are: • advanced communications network infrastructures • evolution of internet basic services • internet of things • netted peripheral sensors • industrial internet • centralized and distributed data centers • embedded computing • cloud computing • software defined network functions and network virtualization • cloud-let and fog-computing • big data, open data and analytical tools • cyber-physical systems • network and distributed operating systems • web services • semantic structures and related software tools • artificial and augmented intelligence • augmented reality • system interoperability and flexible service composition • smart mission-critical system architectures • smart terminals and applications • pro-sumer tools for application design and development • cyber security compliance • privacy compliance • reliability compliance • dependability compliance • accountability compliance • trust compliance • technical quality of basic services.
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