基于优先级的网络切片动态资源分配方案

Haneul Ko, Jaewook Lee, Sangheon Pack
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引用次数: 12

摘要

在网络切片环境中,如果没有足够的资源分配给资源饥渴片(例如,超可靠低延迟通信(URLLC)),其服务质量(QoS)可能会显著降低。在本文中,我们提出了一种基于优先级的动态资源分配方案(PDRAS),其中资源管理代理维护诸如片的优先级和需求概况等信息。基于这些信息,代理动态地为片分配资源。为了使切片的QoS最大化,同时使分配的资源总量保持在一定水平以下,提出了约束马尔可夫决策过程问题,并通过线性规划(LP)实现了最优分配策略。广泛的评估结果表明,与其他方案相比,具有最优策略的PDRAS在QoS和资源使用效率方面是有效的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Priority-Based Dynamic Resource Allocation Scheme in Network Slicing
In the network slicing environment, if insufficient resource is allocated to a resource-hungry slice (e.g., ultrareliable low latency communication (URLLC)), its quality of service (QoS) can be significantly degraded. In this paper, we propose a priority-based dynamic resource allocation scheme (PDRAS) where the resource management agent maintains some information such as priorities and demand profiles of slices. Based on these information, the agent dynamically allocates resources to slices. To maximize QoS of slices while maintaining the total amount of allocated resources below a certain level, a constrained Markov decision process (CMDP) problem is formulated and the optimal allocation policy is achieved by linear programming (LP). Extensive evaluation results are given to demonstrate the effectiveness of PDRAS with the optimal policy compared to that of other schemes in terms of QoS and the efficiency of the resource usage.
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