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  5. Millimeter-Wave Channel Modeling in a Vehicular Ad-Hoc Network Using Bose–Chaudhuri–Hocquenghem (BCH) Code
 
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Millimeter-Wave Channel Modeling in a Vehicular Ad-Hoc Network Using Bose–Chaudhuri–Hocquenghem (BCH) Code

Author(s)
Ahmed, Arshee  
Rasheed, Haroon  
Liyanage, Madhusanka  
Uri
http://hdl.handle.net/10197/24817
Date Issued
2021-04-21
Date Available
2023-10-17T09:57:03Z
Abstract
The increase in capacity demand for vehicular communication is generating interest among researchers. The standard spectra allocated to VANET tend to be saturated and are no longer enough for real-time applications. Millimeter-wave is a potential candidate for VANET applications. However, millimeter-wave is susceptible to pathloss and fading, which degrade system performance. Beamforming, multi-input multi-output (MIMO) and diversity techniques are being employed to minimize throughput, reliability and data rate issues. This paper presents a tractable channel model for VANET in which system performance degradation due to error is addressed by concatenated Alamouti space-time block coding (ASTBC) and Bose–Chaudhuri–Hocquenghem (BCH) coding. Two closed-form approximations of bit error rate (BER), one for BCH in Rayleigh fading and the second for BCH with ASTBC, are derived. These expressions comprise SNR and code rate and can be utilized in designing VANET architectures. The results show that the BER using concatenated ASTBC and BCH outmatches the conventional BER ASTBC expression. The analytical results are compared with numerical results, thereby showing the accuracy of our closed-form expressions. The performance of the proposed expressions is evaluated using different code rates.
Sponsorship
University College Dublin
Type of Material
Journal Article
Publisher
MDPI
Journal
Electronics
Volume
10
Issue
9
Copyright (Published Version)
2021 the Authors
Subjects

Millimeter-wave

VANET

BCH coding

Alamouti space-time c...

Bit error rate

DOI
10.3390/electronics10090992
Language
English
Status of Item
Peer reviewed
ISSN
2079-9292
This item is made available under a Creative Commons License
https://creativecommons.org/licenses/by/3.0/ie/
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electronics-1171301 (17).pdf

Size

2.84 MB

Format

Adobe PDF

Checksum (MD5)

c9e9720a5013ae21b9ed4c82ff619291

Owning collection
Computer Science Research Collection

Item descriptive metadata is released under a CC-0 (public domain) license: https://creativecommons.org/public-domain/cc0/.
All other content is subject to copyright.

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