论文标题

5G和6G中混合延期流量的信息理论视图

An Information-Theoretic View of Mixed-Delay Traffic in 5G and 6G

论文作者

Nikbakht, Homa, Wigger, Michèle, Egan, Malcolm, Shamai, Shlomo, Gorce, Jean-Marie, Poor, H. Vincent

论文摘要

第五代移动通信系统(5G)必须适应超级可靠的低延迟通信(URLLC)和增强的移动宽带(EMBB)服务。尽管EMBB应用程序支持高数据速率,但URLLC服务旨在确保低局限性和高产性。 EMBB和URLLC服务安排在同一频带上,在同一频段中,通信的不同延迟要求使共存具有挑战性。在这项调查中,我们从信息理论的角度审查了编码方案,这些方案同时适应URLLC和EMBB传输,并表明它们表现优于传统的调度方法。考虑了各种通信方案,包括点对点通道,广播频道,干扰网络,蜂窝模型和云无线电访问网络(C-RANS)。主要重点是可以同时实现URLLC和EMBB消息的速率对集,这很好地捕捉了两种类型的通信之间的张力。我们还讨论了有限障碍结果,其中感兴趣的度量是可以在两个通信制度上同时实现的误差概率对。

Fifth generation mobile communication systems (5G) have to accommodate both Ultra-Reliable Low-Latency Communication (URLLC) and enhanced Mobile Broadband (eMBB) services. While, eMBB applications support high data rates, URLLC services aim at guaranteeing low-latencies and high-reliabilities. eMBB and URLLC services are scheduled on the same frequency band, where the different latency requirements of the communications render the coexistence challenging. In this survey, we review, from an information theoretic perspective, coding schemes that simultaneously accommodate URLLC and eMBB transmissions and show that they outperform traditional scheduling approaches. Various communication scenarios are considered, including point-to-point channels, broadcast channels, interference networks, cellular models, and cloud radio access networks (C-RANs). The main focus is on the set of rate pairs that can simultaneously be achieved for URLLC and eMBB messages, which well captures the tension between the two types of communications. We also discuss finite-blocklength results where the measure of interest is the set of error probability pairs that can simultaneously be achieved on the two communication regimes.

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