Analysis of Duplexing Patterns in Multi-Hop mmWave Integrated Access and Backhaul Systems

IF 6.3 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Open Journal of the Communications Society Pub Date : 2024-08-23 DOI:10.1109/OJCOMS.2024.3449234
Nikita Tafintsev;Dmitri Moltchanov;Wei Mao;Hosein Nikopour;Shu-Ping Yeh;Shilpa Talwar;Mikko Valkama;Sergey Andreev
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Abstract

Integrated Access and Backhaul (IAB) technology promises to facilitate cost-effective deployments of 5G New Radio (NR) systems operating in both sub-6 GHz and millimeter-wave (mmWave) bands. As full-duplex wireless systems are in their infancy, initial deployments of IAB networks may need to rely on half-duplex operation to coordinate transmissions between access and backhaul links. However, the use of half-duplex operation not only makes the scheduling of links in the IAB networks interdependent, but also the number of their feasible combinations grows exponentially with the network size, thereby posing challenges to the efficient design of such systems. In this paper, by accounting for mmWave radio characteristics, we propose a joint resource allocation and link scheduling framework to enhance the user equipment (UE) throughput in multi-hop in-band IAB systems. We keep the problem in the form of linear programming type for the feasibility of the practical applications. We show that the increased number of uplink and downlink transmission time interval (TTI) configurations does not result in improved UE throughput as compared to two-TTI configuration. Further, we demonstrate that in-band IAB systems tend to be backhaul-limited, and the utilization of multi-beam functionality at the IAB-donor alleviates this limitation by doubling the average UE throughput. Finally, we show that the use of proportional-fair allocations allows the average UE throughput to be improved by around 10% as compared to the max-min allocations.
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多跳毫米波综合接入和回程系统中的双工模式分析
集成接入和回程(IAB)技术有望促进在 6GHz 以下频段和毫米波(mmWave)频段运行的 5G 新无线电(NR)系统的低成本部署。由于全双工无线系统尚处于起步阶段,IAB 网络的初期部署可能需要依靠半双工操作来协调接入和回程链路之间的传输。然而,使用半双工操作不仅会使 IAB 网络中的链路调度相互依赖,而且其可行组合的数量也会随着网络规模的增大而呈指数增长,从而给此类系统的高效设计带来了挑战。在本文中,通过考虑毫米波无线电特性,我们提出了一种联合资源分配和链路调度框架,以提高多跳带内 IAB 系统中用户设备(UE)的吞吐量。为了实际应用的可行性,我们将问题保持为线性规划类型。我们表明,与双 TTI 配置相比,增加上行和下行传输时间间隔 (TTI) 配置的数量并不能提高 UE 吞吐量。此外,我们还证明了带内 IAB 系统往往会受到回程限制,而在 IAB-donor处利用多波束功能可将 UE 的平均吞吐量提高一倍,从而缓解这一限制。最后,我们表明,与最大-最小分配相比,使用比例-公平分配可使 UE 的平均吞吐量提高约 10%。
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来源期刊
CiteScore
13.70
自引率
3.80%
发文量
94
审稿时长
10 weeks
期刊介绍: The IEEE Open Journal of the Communications Society (OJ-COMS) is an open access, all-electronic journal that publishes original high-quality manuscripts on advances in the state of the art of telecommunications systems and networks. The papers in IEEE OJ-COMS are included in Scopus. Submissions reporting new theoretical findings (including novel methods, concepts, and studies) and practical contributions (including experiments and development of prototypes) are welcome. Additionally, survey and tutorial articles are considered. The IEEE OJCOMS received its debut impact factor of 7.9 according to the Journal Citation Reports (JCR) 2023. The IEEE Open Journal of the Communications Society covers science, technology, applications and standards for information organization, collection and transfer using electronic, optical and wireless channels and networks. Some specific areas covered include: Systems and network architecture, control and management Protocols, software, and middleware Quality of service, reliability, and security Modulation, detection, coding, and signaling Switching and routing Mobile and portable communications Terminals and other end-user devices Networks for content distribution and distributed computing Communications-based distributed resources control.
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