Conservative Link Adaptation for Ultra Reliable Low Latency Communications

A. Belogaev, E. Khorov, A. Krasilov, D. Shmelkin, Suwen Tang
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引用次数: 16

Abstract

Ultra reliable low latency communications (URLLC) is one of the most promising and demanding services in 5G systems. This service requires very low latency of less than 1 − 10 ms and very high transmission reliability: the acceptable packet loss ratio is about 10−5. To satisfy such strict requirements, many issues shall be solved. This paper focuses on the link adaptation problem, i.e., the selection of a modulation and coding scheme (MCS) for transmission based on the received channel quality indicator (CQI) reports. On the one hand, link adaptation should select a robust MCS to provide high reliability. On the other hand, it should select the highest possible MCS to reduce channel resource consumption. The paper shows that even for one URLLC user, link adaptation is still a challenging problem, especially in highly-variant channels. To solve this problem, a conservative link adaptation algorithm is designed. The algorithm estimates the strongest channel degradation at the time moment of the actual packet transmission and selects an MCS taking into account the worst degradation. The obtained results show that the proposed algorithm is efficient in terms of both the packet loss ratio and the channel resource consumption.
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超可靠低延迟通信的保守链路自适应
超可靠低延迟通信(URLLC)是5G系统中最有前途和要求最高的服务之一。时延要求非常低,时延小于1 ~ 10ms,传输可靠性要求非常高,可接受的丢包率在10 ~ 5左右。为了满足如此严格的要求,需要解决许多问题。本文主要研究链路自适应问题,即根据接收到的信道质量指标(CQI)报告选择调制和编码方案(MCS)进行传输。一方面,链路自适应应选择鲁棒的MCS以提供高可靠性。另一方面,它应该选择尽可能高的MCS以减少信道资源消耗。本文表明,即使对于一个URLLC用户,链路自适应仍然是一个具有挑战性的问题,特别是在高度变化的信道中。为了解决这一问题,设计了一种保守的链路自适应算法。该算法估计出实际数据包传输时信道退化最严重的时刻,并根据信道退化最严重的时刻选择MCS。实验结果表明,该算法在丢包率和信道资源消耗方面都是有效的。
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