论文标题

得分terabit/s目标:6G中的宽带连接

Scoring the Terabit/s Goal:Broadband Connectivity in 6G

论文作者

Rajatheva, Nandana, Atzeni, Italo, Bicais, Simon, Bjornson, Emil, Bourdoux, Andre, Buzzi, Stefano, D'Andrea, Carmen, Dore, Jean-Baptiste, Erkucuk, Serhat, Fuentes, Manuel, Guan, Ke, Hu, Yuzhou, Huang, Xiaojing, Hulkkonen, Jari, Jornet, Josep Miquel, Katz, Marcos, Makki, Behrooz, Nilsson, Rickard, Panayirci, Erdal, Rabie, Khaled, Rajapaksha, Nuwanthika, Salehi, MohammadJavad, Sarieddeen, Hadi, Shahabuddin, Shahriar, Svensson, Tommy, Tervo, Oskari, Tolli, Antti, Wu, Qingqing, Xu, Wen

论文摘要

本文探讨了在未来6G无线系统中大大改善宽带连接的道路。考虑了不同类别的用例,峰值数据速率高达1 TBP。需要在基础架构,频谱和协议/算法级别上的几类推动因素才能实现6G中预期的宽带连接目标。在基础架构级别,我们考虑使用超质量的MIMO技术(可能是使用全息广播实施),智能反射表面,无用户以用户为中心的网络网络,集成访问和回程以及集成的空间和地面网络。在频谱级别,网络必须无缝利用亚第6 GHz频段进行许多设备的覆盖范围和空间多路复用,而较高的频段将主要用于推动点对点链路的峰值速率。最后,在协议/算法级别上,启用器包括改进的编码,调制和波形,以达到较低的延迟,较高的可靠性和降低的复杂性。

This paper explores the road to vastly improving the broadband connectivity in future 6G wireless systems. Different categories of use cases are considered, with peak data rates up to 1 Tbps. Several categories of enablers at the infrastructure, spectrum, and protocol/algorithmic levels are required to realize the intended broadband connectivity goals in 6G. At the infrastructure level, we consider ultra-massive MIMO technology (possibly implemented using holographic radio), intelligent reflecting surfaces, user-centric cell-free networking, integrated access and backhaul, and integrated space and terrestrial networks. At the spectrum level, the network must seamlessly utilize sub-6 GHz bands for coverage and spatial multiplexing of many devices, while higher bands will be mainly used for pushing the peak rates of point-to-point links. Finally, at the protocol/algorithmic level, the enablers include improved coding, modulation, and waveforms to achieve lower latency, higher reliability, and reduced complexity.

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