Cache allocation Algorithm of 5G Core Network Slicing Based on Soft Migration Actor Critic*

Q3 Arts and Humanities
Icon Pub Date : 2023-03-01 DOI:10.1109/ICNLP58431.2023.00070
Chenglin Xu, Guohui Zhu, Qianwen Yang
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引用次数: 0

Abstract

In the complex environment of network slicing in 5G core network, such applications with severe demand on latency like ultra Reliable and Low Latency Communication for virtual reality, autonomous driving and remote control. A soft migration actor-critic based network slicing cache allocation algorithm under 5G core network is proposed for such applications. With the goal of reducing request latency and the cost of deploying network slices, a cache deployment model that minimizes latency and cost is established. The soft migration actor-critic (STAC) cache allocation algorithm is used to adjust the deployment by interacting with the environment non-stop to reduce the response latency of user requested contents more effectively, improve the user’s web service experience, and respond to user requests faster, while reducing the cost of deploying network slices to achieve the solution of the model. The simulation results show that the proposed cache allocation algorithm can effectively reduce the cost and user request latency.
基于软迁移的5G核心网切片缓存分配算法
在5G核心网网络切片的复杂环境下,虚拟现实、自动驾驶、远程控制等超可靠、低延迟通信等对时延要求较高的应用。针对这类应用,提出了一种5G核心网下基于软迁移行为者评价的网络切片缓存分配算法。以减少请求延迟和部署网络片的成本为目标,建立了一个最小化延迟和成本的缓存部署模型。采用软迁移actor-critic (STAC)缓存分配算法,通过与环境的不间断交互来调整部署,更有效地减少用户请求内容的响应延迟,提高用户的web服务体验,更快地响应用户请求,同时降低部署网络切片的成本,实现模型的解决方案。仿真结果表明,所提出的缓存分配算法能够有效地降低开销和用户请求延迟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Icon Arts and Humanities-History and Philosophy of Science
CiteScore
0.30
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