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Non-Orthogonal eMBB-URLLC Radio Access for Cloud Radio Access Networks with Analog Fronthauling

机译:云无线电接入网络的非正交emb-Urllc无线电接入模拟Frontonimling

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摘要

This paper considers the coexistence of Ultra Reliable Low Latency Communications (URLLC) and enhanced Mobile BroadBand (eMBB) services in the uplink of Cloud Radio Access Network (C-RAN) architecture based on the relaying of radio signals over analog fronthaul links. While Orthogonal Multiple Access (OMA) to the radio resources enables the isolation and the separate design of different 5G services, Non-Orthogonal Multiple Access (NOMA) can enhance the system performance by sharing wireless and fronthaul resources. This paper provides an information-theoretic perspective in the performance of URLLC and eMBB traffic under both OMA and NOMA. The analysis focuses on standard cellular models with additive Gaussian noise links and a finite inter-cell interference span, and it accounts for different decoding strategies such as puncturing, Treating Interference as Noise (TIN) and Successive Interference Cancellation (SIC). Numerical results demonstrate that, for the considered analog fronthauling C-RAN architecture, NOMA achieves higher eMBB rates with respect to OMA, while guaranteeing reliable low-rate URLLC communication with minimal access latency. Moreover, NOMA under SIC is seen to achieve the best performance, while, unlike the case with digital capacity-constrained fronthaul links, TIN always outperforms puncturing.
机译:本文认为超可靠的低延迟通信(URLLC)和增强的移动宽带(嵌入式移动宽带(嵌入式移动宽带(embb)服务的共存基于模拟Fronthaul链路的无线电信号的继电器,在云无线电接入网络(C-RAN)架构上的上行链路中。虽然对无线电资源的正交多次访问(OMA)启用了不同的5G服务的单独设计,但非正交的多址(NOMA)可以通过共享无线和Fronthaul资源来提高系统性能。本文提供了在OMA和NOMA下的URLLC和embB流量的表现中的信息理论观点。该分析侧重于具有添加性高斯噪声链路的标准蜂窝模型和有限的小区间干扰跨度,并且它考虑了不同的解码策略,例如穿刺,处理干扰作为噪声(TIN)和连续干扰消除(SIC)。数值结果表明,对于考虑的模拟Fronshiuming C-RAN架构,NOMA可以实现常规的eMA率高,同时保证可靠的低利率URLLC通信与最小的访问延迟。此外,SIC下的NOMA被视为达到最佳性能,而与数字容量受限的Fronsthaul链路不同,锡总是始终穿刺。

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