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Joint Resource Configuration and MCS Selection Scheme for Uplink Grant-Free URLLC

机译:用于上行链路授权URLLC的联合资源配置和MCS选择方案

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Ultra-reliable and low-latency communications (URLLC) addresses the most challenging set of services for 5G New Radio. Uplink grant-free transmissions is recognized as a promising solution to meet the ambitious URLLC target (1 ms latency at a 99.999% reliability). Achieving such a high reliability comes at the expense of poor spectral efficiency, which ultimately affects the load supported by the system. This paper proposes a joint resource allocation solution including multiple modulation and coding schemes (MCSs) and power control settings for grant-free uplink transmissions on shared resources. The scheme assigns smaller bandwidths parts and higher MCS to the UEs in good average channel conditions, reducing the probability of fully overlapping transmissions. The performance analysis shows that the scheme is capable of increasing the system outage capacity by ~90%, compared to prior art solutions using a conservative single-MCS configuration with fully overlapping transmissions.
机译:超可靠和低延迟通信(URLLC)为5G新收音机提供了最具挑战性的服务集。上行链路许可传输被识别为满足雄心勃勃的Urllc目标的有希望的解决方案(以99.999 %的可靠性为1 ms延迟)。实现如此高可靠性以缺乏差的频谱效率,最终影响系统支持的负载。本文提出了一个联合资源分配解决方案,包括多种调制和编码方案(MCS)和用于自由资源的无授予上行链路传输的电源控制设置。该方案在良好的平均信道条件下为UE分配更小的带宽部分和更高的MC,从而降低完全重叠传输的概率。性能分析表明,与现有技术解决方案使用具有完全重叠的传输的现有技术解决方案相比,该方案能够将系统中断容量提高〜90 %。

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