无线局域网切片中的联合切片水平和基站水平准入控制

Hong Shen, Yukai Ye, Tiankui Zhang
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引用次数: 0

摘要

第五代(5G)无线接入网络(RAN)中的切片准入控制应考虑到服务水平协议(SLA)的保证。本文研究了动态异构RAN场景下不同类型的分片sla对用户传输速率服务质量(QoS)的约束。我们将无线局域网切片接纳控制问题建模为两部分:片级接纳控制和基站级接纳控制。然后,我们设计了一个基于用户和切片的服务请求队列,并提出了RAN切片的最优准入控制问题。这个问题分为两个子问题。分别利用Lyapunov优化理论和贪心策略在每帧内求解片级准入控制子问题和bs级准入控制子问题,最终得到近似最优解。仿真结果表明,与基准算法相比,该算法可以获得最佳的时间平均收益和最佳的准入控制决策。
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Joint Slice Level and Base Station Level Admission Control in RAN Slicing
The slicing admission control in fifth generation (5G) radio access networks (RAN) should be considering for the service level agreement (SLA) guarantees. In this paper, we present constraints on user transmission rate quality of service (QoS) for different kinds of slice SLAs in dynamic heterogeneous RAN scenario with differentially covered RAN slicing. We model the RAN slicing admission control problem as two parts: slice-level admission control and base station (BS)-level admission control. Then, we design a user-and-slice based service request queue and propose an optimal admission control problem for RAN slicing. The problem is divided into two sub-problems. We solve the slice-level admission control sub-problem and the BS-level admission control sub-problem within each frame by using Lyapunov's optimization theory and greedy strategy respectively, and finally obtain the approximate optimal solution. The simulation results show that the proposed algorithm can obtain the best time average profit and the best admission control decision compared with the benchmark algorithms.
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