The next generations of mobile networks will be deployed as ultra-dense networks, to match the demand for increased capacity and the challenges that communications in the higher portion of the spectrum (i.e., the mmWave band) introduce. Ultra-dense networks, however, require pervasive, high-capacity backhaul solutions, and deploying fiber optic to all base stations is generally considered to be too expensive for network operators. The 3rd Generation Partnership Project (3GPP) has thus introduced Integrated Access and Backhaul (IAB), a wireless backhaul solution in which the access and backhaul links share the same hardware, protocol stack, and also spectrum. The multiplexing of different links in the same frequency bands, however, introduces interference and capacity sharing issues, thus calling for the introduction of advanced scheduling and coordination schemes. This paper proposes a semi-centralized resource allocation scheme for IAB networks, designed to be flexible, with low complexity, and compliant with the 3GPP IAB specifications. We develop a version of the Maximum Weighted Matching (MWM) problem that can be applied on a spanning tree that represents the IAB network and whose complexity is linear in the number of IAB-nodes. The proposed solution is compared with state-of-the-art distributed approaches through end-to-end, full-stack system-level simulations with a 3GPP-compliant channel model, protocol stack, and a diverse set of user applications. The results show how that our scheme can increase the throughput of cell-edge users up to 5 times, while decreasing the overall network congestion with an end-to-end delay reduction of up to 25 times.
翻译:下一代移动网络将作为超高级网络部署,以匹配对增加能力的需求以及频谱中较高部分(即毫米Wave波段)通信带来的挑战。但是,超高频网需要普遍、高容量的回航解决方案,向所有基地站部署光纤通常被认为对网络操作员来说太昂贵。第三代伙伴关系项目(3GPPP)因此引入了综合存取和回路(IAB),这是一种无线双向双向回流解决方案,在这种解决方案中,访问和回流链接与频谱共享相同的硬件、协议堆和频谱。但是,在同一频段中,不同链接的多重连接带来了干扰和能力共享问题,从而要求采用先进的排期安排和协调计划。本文建议为IAB网络采用半集中的资源分配计划,目的是灵活、不那么复杂,符合3GPPP IAB 模型的规格。我们开发了一个无线双向双向相匹配(MWMM) 问题版本,可以应用在横跨树上相同的硬件、协议堆叠、协议堆叠以及频段的用户之间,而IAB网络的全端路路路路路路将显示整个系统的复杂到直径路路路路路路路段,通过时间显示全线路路路路路段的系统运行的系统到直向时间分布。