Demo:[SeBaSi] system-level Integrated Access and Backhaul simulator for self-backhauling

Amir Ashtari Gargari, Matteo Pagin, Andrea Ortiz, Nairy Moghadas-Gholian, Michele Polese, Michele Zorzi
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Abstract

millimeter wave (mmWave) and sub-terahertz (THz) communications have the potential of increasing mobile network throughput drastically. However, the challenging propagation conditions experienced at mmWave and beyond frequencies can potentially limit the range of the wireless link down to a few meters, compared to up to kilometers for sub-6GHz links. Thus, increasing the density of base station deployments is required to achieve sufficient coverage in the Radio Access Network (RAN). To such end, 3rd Generation Partnership Project (3GPP) introduced wireless backhauled base stations with Integrated Access and Backhaul (IAB), a key technology to achieve dense networks while preventing the need for costly fiber deployments. In this paper, we introduce SeBaSi, a system-level simulator for IAB networks, and demonstrate its functionality by simulating IAB deployments in Manhattan, New York City and Padova. Finally, we show how SeBaSi can represent a useful tool for the performance evaluation of self-backhauled cellular networks, thanks to its high level of network abstraction, coupled with its open and customizable design, which allows users to extend it to support novel technologies such as Reconfigurable Intelligent Surfaces (RISs).
演示:[SeBaSi]用于自回程的系统级集成访问和回程模拟器
毫米波(mmWave)和次太赫兹(THz)通信具有大幅增加移动网络吞吐量的潜力。然而,在毫米波和更高频率下经历的具有挑战性的传播条件可能会将无线链路的范围限制在几米以内,而低于6ghz的链路则可以达到几公里。因此,需要增加基站部署的密度,以实现无线接入网(RAN)的充分覆盖。为此,第三代合作伙伴计划(3GPP)推出了具有综合接入和回程(IAB)的无线回传基站,这是实现密集网络同时避免昂贵的光纤部署的关键技术。本文介绍了用于IAB网络的系统级模拟器SeBaSi,并通过模拟IAB在曼哈顿、纽约市和帕多瓦的部署来演示其功能。最后,我们展示了SeBaSi如何能够代表一个有用的工具,用于自回程蜂窝网络的性能评估,这要归功于其高水平的网络抽象,再加上其开放和可定制的设计,允许用户扩展它以支持新技术,如可重构智能表面(RISs)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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