An Analysis on Wireless Edge Caching in In-Band Full-Duplex FR2-IAB Networks

This article develops a 3GPP inspired analytical framework for cache-enabled in-band full-duplex (IBFD) integrated access and backhaul (IAB) heterogeneous network in the FR2 (millimeter wave) band. In particular, by assuming wide-band FR2 channel model, we analyze the performance of cache-enabled IA...

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Main Authors: Tong Zhang, Sudip Biswas, Tharmalingam Ratnarajah
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Access
Subjects:
FR2
Online Access:https://ieeexplore.ieee.org/document/9187786/
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spelling doaj-add12c7664da46f788544973099ed6fc2021-03-30T03:33:21ZengIEEEIEEE Access2169-35362020-01-01816498716500210.1109/ACCESS.2020.30227259187786An Analysis on Wireless Edge Caching in In-Band Full-Duplex FR2-IAB NetworksTong Zhang0https://orcid.org/0000-0002-6689-0259Sudip Biswas1https://orcid.org/0000-0002-3017-3864Tharmalingam Ratnarajah2https://orcid.org/0000-0002-7636-1246School of Engineering, Institute for Digital Communications, The University of Edinburgh, Edinburgh, U.K.Department of Electronics and Communications Engineering, Indian Institute of Information Technology Guwahati, Guwahati, IndiaSchool of Engineering, Institute for Digital Communications, The University of Edinburgh, Edinburgh, U.K.This article develops a 3GPP inspired analytical framework for cache-enabled in-band full-duplex (IBFD) integrated access and backhaul (IAB) heterogeneous network in the FR2 (millimeter wave) band. In particular, by assuming wide-band FR2 channel model, we analyze the performance of cache-enabled IAB nodes that serve multiple users in access in IBFD mode through hybrid beamforming architectures. Since, IBFD transmission is considered, the IAB nodes are able to retrieve any non-cached files simultaneously through backhaul from the IAB donor nodes, which also use hybrid beamforming architectures. Utilizing stochastic geometry tools, we first derive the lower-bound for the average success probability (ASP) of file delivery for the considered system model, using which we evaluate two quintessential performance metrics: latency and average throughput of file delivery under a cache-enabled content delivery phase. Further, as a baseline for comparison, we also consider conventional half-duplex techniques, namely time division duplex and frequency division duplex transmission and evaluate their performance with respect to cache size, node density, content popularity, antenna numbers, blockage density, and residual self-interference. Numerical results demonstrate the precedency of using wireless edge caching as a cost-effective measure for improving the FR2-IAB network's performance. More importantly, we provide several design insights for the implementation of wireless edge caching in IBFD FR2-IAB networks, with respect to required residual self interference cancellation, increasing antenna number, increasing target data rate and IAB node density.https://ieeexplore.ieee.org/document/9187786/Wireless edge cachingin-band full-duplexFR25G NRstochastic geometryintegrated access and backhaul networks
collection DOAJ
language English
format Article
sources DOAJ
author Tong Zhang
Sudip Biswas
Tharmalingam Ratnarajah
spellingShingle Tong Zhang
Sudip Biswas
Tharmalingam Ratnarajah
An Analysis on Wireless Edge Caching in In-Band Full-Duplex FR2-IAB Networks
IEEE Access
Wireless edge caching
in-band full-duplex
FR2
5G NR
stochastic geometry
integrated access and backhaul networks
author_facet Tong Zhang
Sudip Biswas
Tharmalingam Ratnarajah
author_sort Tong Zhang
title An Analysis on Wireless Edge Caching in In-Band Full-Duplex FR2-IAB Networks
title_short An Analysis on Wireless Edge Caching in In-Band Full-Duplex FR2-IAB Networks
title_full An Analysis on Wireless Edge Caching in In-Band Full-Duplex FR2-IAB Networks
title_fullStr An Analysis on Wireless Edge Caching in In-Band Full-Duplex FR2-IAB Networks
title_full_unstemmed An Analysis on Wireless Edge Caching in In-Band Full-Duplex FR2-IAB Networks
title_sort analysis on wireless edge caching in in-band full-duplex fr2-iab networks
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2020-01-01
description This article develops a 3GPP inspired analytical framework for cache-enabled in-band full-duplex (IBFD) integrated access and backhaul (IAB) heterogeneous network in the FR2 (millimeter wave) band. In particular, by assuming wide-band FR2 channel model, we analyze the performance of cache-enabled IAB nodes that serve multiple users in access in IBFD mode through hybrid beamforming architectures. Since, IBFD transmission is considered, the IAB nodes are able to retrieve any non-cached files simultaneously through backhaul from the IAB donor nodes, which also use hybrid beamforming architectures. Utilizing stochastic geometry tools, we first derive the lower-bound for the average success probability (ASP) of file delivery for the considered system model, using which we evaluate two quintessential performance metrics: latency and average throughput of file delivery under a cache-enabled content delivery phase. Further, as a baseline for comparison, we also consider conventional half-duplex techniques, namely time division duplex and frequency division duplex transmission and evaluate their performance with respect to cache size, node density, content popularity, antenna numbers, blockage density, and residual self-interference. Numerical results demonstrate the precedency of using wireless edge caching as a cost-effective measure for improving the FR2-IAB network's performance. More importantly, we provide several design insights for the implementation of wireless edge caching in IBFD FR2-IAB networks, with respect to required residual self interference cancellation, increasing antenna number, increasing target data rate and IAB node density.
topic Wireless edge caching
in-band full-duplex
FR2
5G NR
stochastic geometry
integrated access and backhaul networks
url https://ieeexplore.ieee.org/document/9187786/
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