Suppressing the Effect of Impulsive Noise on Millimeter-Wave Communications Systems

The Fifth Generation (5G) wireless communication systems are expected to satisfy higher data rates, network scalability, increasing number of connections and higher traffic densities in a cost-effective manner. The key essence of 5G technology resides in exploring the frequency bands at millimeter-W...

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Main Authors: L. Shhab, A. Rizaner, A. H. Ulusoy, H. Amca
Format: Article
Language:English
Published: Spolecnost pro radioelektronicke inzenyrstvi 2020-06-01
Series:Radioengineering
Subjects:
Online Access:https://www.radioeng.cz/fulltexts/2020/20_02_0376_0385.pdf
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author L. Shhab
A. Rizaner
A. H. Ulusoy
H. Amca
author_facet L. Shhab
A. Rizaner
A. H. Ulusoy
H. Amca
author_sort L. Shhab
collection DOAJ
description The Fifth Generation (5G) wireless communication systems are expected to satisfy higher data rates, network scalability, increasing number of connections and higher traffic densities in a cost-effective manner. The key essence of 5G technology resides in exploring the frequency bands at millimeter-Wave (mmWave) frequencies. As is well known, the presence of Impulsive Noise (IN) corrupts signals and leads to increased Bit Error Rate (BER) and decreased spectral efficiency. In this paper, the performance of mmWave systems in multi-path fading channel and IN is studied and a new thresholding mechanism for the clipping and blanking filters to suppress the impulsive components of noise is suggested. The paper also presents the mathematical expressions to determine the optimum threshold selection for the filters. Simulation results show that use of clipping and blanking filters with the optimal threshold values reduces the adverse effect of IN and improves system performance significantly.
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spelling doaj.art-6c41828bcff94316b727b2a98e5d87382022-12-21T18:52:20ZengSpolecnost pro radioelektronicke inzenyrstviRadioengineering1210-25122020-06-01292376385Suppressing the Effect of Impulsive Noise on Millimeter-Wave Communications SystemsL. ShhabA. RizanerA. H. UlusoyH. AmcaThe Fifth Generation (5G) wireless communication systems are expected to satisfy higher data rates, network scalability, increasing number of connections and higher traffic densities in a cost-effective manner. The key essence of 5G technology resides in exploring the frequency bands at millimeter-Wave (mmWave) frequencies. As is well known, the presence of Impulsive Noise (IN) corrupts signals and leads to increased Bit Error Rate (BER) and decreased spectral efficiency. In this paper, the performance of mmWave systems in multi-path fading channel and IN is studied and a new thresholding mechanism for the clipping and blanking filters to suppress the impulsive components of noise is suggested. The paper also presents the mathematical expressions to determine the optimum threshold selection for the filters. Simulation results show that use of clipping and blanking filters with the optimal threshold values reduces the adverse effect of IN and improves system performance significantly.https://www.radioeng.cz/fulltexts/2020/20_02_0376_0385.pdfmillimeter-waveimpulsive noiseclippingblanking
spellingShingle L. Shhab
A. Rizaner
A. H. Ulusoy
H. Amca
Suppressing the Effect of Impulsive Noise on Millimeter-Wave Communications Systems
Radioengineering
millimeter-wave
impulsive noise
clipping
blanking
title Suppressing the Effect of Impulsive Noise on Millimeter-Wave Communications Systems
title_full Suppressing the Effect of Impulsive Noise on Millimeter-Wave Communications Systems
title_fullStr Suppressing the Effect of Impulsive Noise on Millimeter-Wave Communications Systems
title_full_unstemmed Suppressing the Effect of Impulsive Noise on Millimeter-Wave Communications Systems
title_short Suppressing the Effect of Impulsive Noise on Millimeter-Wave Communications Systems
title_sort suppressing the effect of impulsive noise on millimeter wave communications systems
topic millimeter-wave
impulsive noise
clipping
blanking
url https://www.radioeng.cz/fulltexts/2020/20_02_0376_0385.pdf
work_keys_str_mv AT lshhab suppressingtheeffectofimpulsivenoiseonmillimeterwavecommunicationssystems
AT arizaner suppressingtheeffectofimpulsivenoiseonmillimeterwavecommunicationssystems
AT ahulusoy suppressingtheeffectofimpulsivenoiseonmillimeterwavecommunicationssystems
AT hamca suppressingtheeffectofimpulsivenoiseonmillimeterwavecommunicationssystems