In this paper, we study the problem of topology optimization and routing in integrated access and backhaul (IAB) networks, as one of the promising techniques for evolving 5G networks. We study the problem from different perspectives. We develop efficient genetic algorithm-based schemes for both IAB node placement and non-IAB backhaul link distribution, and evaluate the effect of routing on bypassing temporal blockages. Here, concentrating on millimeter wave-based communications, we study the service coverage probability, defined as the probability of the event that the user equipments' (UEs) minimum rate requirements are satisfied. Moreover, we study the effect of different parameters such as the antenna gain, blockage and tree foliage on the system performance. Finally, we summarize the recent Rel-16 as well as the upcoming Rel-17 3GPP discussions on routing in IAB networks, and discuss the main challenges for enabling mesh-based IAB networks. As we show, with a proper network topology, IAB is an attractive approach to enable the network densification required by 5G and beyond.
翻译:在本文中,我们研究了综合接入和回航(IAB)网络中的地形优化和路径选择问题,这是发展5G网络的有希望的技术之一;我们从不同角度研究这一问题;我们为IAB节点定位和非IAB回路连接分布制定高效的遗传算法计划,并评估绕过时间阻隔的路线影响。我们在此集中研究以毫米波为基础的通信,研究服务覆盖概率,定义为用户设备满足最低费率要求的概率。此外,我们研究天线增益、阻塞和树叶叶等不同参数对系统性能的影响。最后,我们总结了最近Rel-16和即将到来的Rel-17 3GPP关于IAB网络路线设置的讨论,并讨论了使光网为基础的IAB网络能够使用的主要挑战。我们用适当的网络地形表明,IAB是一种有吸引力的方法,可以使5G系统内外所需的网络密度成为可能。