The recently proposed NR-ready integrated access and backhaul (IAB) architecture promises to bring a cost-efficient deployment solution for both coverage extension and capacity boosting in future 5G/5G+ systems. While its impact on the coverage extension was thoughtfully addressed in the literature, the effect of advanced functionalities such as multi-hop, multi-connectivity, and multi-beam operations on the throughput remains unclear. We review and characterize the system-level impact of these capabilities on the performance of self-backhauled IAB systems operating in half-duplex mode and utilizing millimeter-wave (mmWave) technology across both access and backhaul. Our results indicate that the throughput gain of multi-hopping and multi-beaming is significant even without multi-connectivity operation. Another important learning is that in all-mmWave systems with link blockage, multi-connectivity with link switching allows achieving self-load balancing. Finally, we outline future research directions.
翻译:最近提议的NR-准备就绪的综合接入和回路(IAB)架构有望在未来5G/5G+系统内为扩大覆盖面和增强能力带来一个成本效益高的部署解决方案,虽然文献中已充分讨论了其对扩大覆盖面的影响,但诸如多点连接、多连接和多波段操作等先进功能对输送量的影响仍然不清楚。我们审查并描述这些能力对以半双倍模式运行的自回式互联网系统以及将毫米波(mmWave)技术用于跨接入和回路运行的系统绩效的系统影响。我们的结果表明,即使没有多选择和多波段操作,多选择和多波段的吞吐量收益也是巨大的。另一项重要的学习是,在带有连接阻塞、多连接和连接转换连接连接的全MWave系统中,这些能力对以半双倍模式运行并利用毫米波(mmWave)技术实现自载平衡的系统影响。最后,我们概述了未来的研究方向。