Bandwidth Partitioning and Downlink Analysis in Millimeter Wave Integrated Access and Backhaul for 5G
Chiranjib Saha, Mehrnaz Afshang, and Harpreet S. Dhillon

TL;DR
This paper develops an analytical framework to evaluate the downlink rate coverage in 5G mm-wave integrated access and backhaul networks, analyzing bandwidth partition strategies and their impact on network performance.
Contribution
It introduces a novel analytical model for IAB-enabled 5G networks and compares different backhaul bandwidth partition strategies to optimize rate coverage.
Findings
Optimal bandwidth split maximizes rate coverage.
Performance gains diminish beyond a critical user load.
Load-based partition strategies outperform equal sharing.
Abstract
With the increasing network densification, it has become exceedingly difficult to provide traditional fiber backhaul access to each cell site, which is especially true for small cell base stations (SBSs). The increasing maturity of millimeter wave (mm-wave) communication has opened up the possibility of providing high-speed wireless backhaul to such cell sites. Since mm-wave is also suitable for access links, the third generation partnership project (3GPP) is envisioning an integrated access and backhaul (IAB) architecture for the fifth generation (5G) cellular networks in which the same infrastructure and spectral resources will be used for both access and backhaul. In this paper, we develop an analytical framework for IAB-enabled cellular network using which its downlink rate coverage probability is accurately characterized. Using this framework, we study the performance of three…
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