Non-Orthogonal Multiplexing of eMBB and URLLC in Multi-cell Massive MIMO

Giovanni Interdonato, S. Buzzi, C. D’Andrea, L. Venturino
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Abstract

The non-orthogonal coexistence between the enhanced mobile broadband (eMBB) and the ultra-reliable low-latency communication (URLLC) in the downlink of a multi-cell massive MIMO system is investigated in this work. We provide a unified information-theoretic framework blending an infinite-blocklength analysis of the eMBB spectral efficiency (SE) in the ergodic regime with a finite-blocklength analysis of the URLLC error probability. Puncturing (PUNC) and superposition coding (SPC) are considered as alternative coexistence strategies to deal with the inter-service interference. eMBB and URLLC performances are then evaluated over different precoding techniques and power control schemes, by accounting for imperfect channel state information knowledge at the base stations, pilot-based estimation overhead, spatially correlated channels, and the structure of the radio frame. Simulation results reveal that SPC is, in many operating regimes, superior to PUNC in providing higher SE for the eMBB yet achieving the target reliability for the URLLC with high probability. However, PUNC turns to be necessary to preserve the URLLC performance in scenarios where the multi-user interference cannot be satisfactorily alleviated.
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多小区大规模MIMO中eMBB和URLLC的非正交复用
研究了增强型移动宽带(eMBB)和超可靠低延迟通信(URLLC)在多小区大规模MIMO系统下行链路中的非正交共存问题。我们提供了一个统一的信息理论框架,将eMBB频谱效率(SE)的无限块长度分析与URLLC错误概率的有限块长度分析混合在一起。穿孔(PUNC)和叠加编码(SPC)被认为是处理服务间干扰的两种共存策略。然后,通过考虑基站不完善的信道状态信息知识、基于导频的估计开销、空间相关信道和无线电帧结构,对不同预编码技术和功率控制方案下的eMBB和URLLC性能进行了评估。仿真结果表明,在许多工况下,SPC在为eMBB提供更高SE的同时,又能以高概率实现URLLC的目标可靠性,优于PUNC。然而,在不能令人满意地缓解多用户干扰的情况下,PUNC成为保持URLLC性能的必要条件。
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