Adaptive Transmission Parameters Selection Algorithm for URLLC Traffic in Uplink

Aleksei Shahsin, A. Belogaev, A. Krasilov, E. Khorov
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引用次数: 2

Abstract

Ultra-Reliable Low-Latency Communications (URLLC) is a novel feature of 5G cellular systems. To satisfy strict URLLC requirements for uplink data transmission, the specifications of 5G systems introduce the grant-free channel access method. According to this method, a User Equipment (UE) performs packet transmission without requesting channel resources from a base station (gNB). With the grant-free channel access, the gNB configures the uplink transmission parameters in a long-term time scale. Since the channel quality can significantly change in time and frequency domains, the gNB should select robust transmission parameters to satisfy the URLLC requirements. Many existing studies consider fixed robust uplink transmission parameter selection that allows satisfying the requirements even for UEs with poor channel conditions. However, the more robust transmission parameters are selected, the lower is the network capacity. In this paper, we propose an adaptive algorithm that selects the transmission parameters depending on the channel quality based on the signal-to-noise ratio statistics analysis at the gNB. Simulation results obtained with NS-3 show that the algorithm allows meeting the URLLC latency and reliability requirements while reducing the channel resource consumption more than twice in comparison with the fixed transmission parameters selection.
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URLLC上行流量的自适应传输参数选择算法
超可靠低延迟通信(URLLC)是5G蜂窝系统的新特性。为了满足上行数据传输严格的URLLC要求,5G系统规范中引入了免授权通道接入方式。根据该方法,用户设备(UE)在不向基站(gNB)请求信道资源的情况下进行分组传输。通过免授权通道接入,gNB可以配置长期时间尺度的上行链路传输参数。由于信道质量在时域和频域中会发生显著变化,gNB应选择鲁棒传输参数以满足URLLC要求。许多现有研究考虑了固定鲁棒上行传输参数选择,即使对于信道条件较差的终端也能满足要求。但是,选择的鲁棒传输参数越多,网络容量越小。本文提出了一种基于gNB信噪比统计分析,根据信道质量选择传输参数的自适应算法。利用NS-3进行的仿真结果表明,该算法在满足URLLC时延和可靠性要求的同时,比固定传输参数选择减少了2倍以上的信道资源消耗。
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