HUMIDITY EFFECT TO 5G PERFORMANCES UNDER PALEMBANG CHANNEL MODEL AT 28 GHZ
The telecommunication has a tremendous improvement in terms of data rates and bandwidth requiring sufficient frequency allocation and wideband spectrum availability. The millimeter-wave frequency band is one of the solution to these requirements, however communications in this band is facing new cha...
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Universitas Mercu Buana
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doaj-7c73e41964c1442f817102355e3ac6c12020-11-25T00:29:40ZindUniversitas Mercu BuanaJurnal Ilmiah SINERGI1410-23312460-12172020-01-01241495610.22441/sinergi.2020.1.0073178HUMIDITY EFFECT TO 5G PERFORMANCES UNDER PALEMBANG CHANNEL MODEL AT 28 GHZBengawan Alfaresi0Zainudin Nawawi1Reza Firsandaya Malik2Khoirul Anwar3Levy Olivia Nur4Doctoral Program of Engineering Science, Faculty of Engineering, Universitas Sriwijaya Department of Electrical Eng., Faculty of Eng., Universitas Muhammadiyah PalembangDepartment of Electrical Engineering, Faculty of Eng., Universitas SriwijayaDepartment of Computer System, Faculty of Computer Science, Universitas SriwijayaThe Center for Advanced Wireless Technologies (AdWiTech), Telkom UniversitySchool of Electrical Engineering, Telkom UniversityThe telecommunication has a tremendous improvement in terms of data rates and bandwidth requiring sufficient frequency allocation and wideband spectrum availability. The millimeter-wave frequency band is one of the solution to these requirements, however communications in this band is facing new challenges on the climate effect to the channel propagation In this paper, we propose a 5G channel model considering the effect of humidity based on the characteristic of the natural environment of Palembang city. The channel model is represented by power levels and delay called a Power Delay Profile (PDP and is derived based on a series of computer simulations using parameters of nature in Palembang. The 5G channel model is important to further derive the outage performance to be used as the theoretical performance of 5G in Palembang since the the Shannon Channel Capacity Theorem is involved in the derivation. We conduct a series of computer simulations to evaluate the validity of the proposed channel model and its characteristics. We found that humidity affect to the performances, where high humidity makes the performances of outage and BER slightly worse, although the effect may be ignored for some applications. The results of this paper are expected to be the references for the development and implementation of 5G Networks especially at the mm-Wave band in Palembang.http://publikasi.mercubuana.ac.id/index.php/sinergi/article/view/6227channel modelpdpoutage performanceberfer |
collection |
DOAJ |
language |
Indonesian |
format |
Article |
sources |
DOAJ |
author |
Bengawan Alfaresi Zainudin Nawawi Reza Firsandaya Malik Khoirul Anwar Levy Olivia Nur |
spellingShingle |
Bengawan Alfaresi Zainudin Nawawi Reza Firsandaya Malik Khoirul Anwar Levy Olivia Nur HUMIDITY EFFECT TO 5G PERFORMANCES UNDER PALEMBANG CHANNEL MODEL AT 28 GHZ Jurnal Ilmiah SINERGI channel model pdp outage performance ber fer |
author_facet |
Bengawan Alfaresi Zainudin Nawawi Reza Firsandaya Malik Khoirul Anwar Levy Olivia Nur |
author_sort |
Bengawan Alfaresi |
title |
HUMIDITY EFFECT TO 5G PERFORMANCES UNDER PALEMBANG CHANNEL MODEL AT 28 GHZ |
title_short |
HUMIDITY EFFECT TO 5G PERFORMANCES UNDER PALEMBANG CHANNEL MODEL AT 28 GHZ |
title_full |
HUMIDITY EFFECT TO 5G PERFORMANCES UNDER PALEMBANG CHANNEL MODEL AT 28 GHZ |
title_fullStr |
HUMIDITY EFFECT TO 5G PERFORMANCES UNDER PALEMBANG CHANNEL MODEL AT 28 GHZ |
title_full_unstemmed |
HUMIDITY EFFECT TO 5G PERFORMANCES UNDER PALEMBANG CHANNEL MODEL AT 28 GHZ |
title_sort |
humidity effect to 5g performances under palembang channel model at 28 ghz |
publisher |
Universitas Mercu Buana |
series |
Jurnal Ilmiah SINERGI |
issn |
1410-2331 2460-1217 |
publishDate |
2020-01-01 |
description |
The telecommunication has a tremendous improvement in terms of data rates and bandwidth requiring sufficient frequency allocation and wideband spectrum availability. The millimeter-wave frequency band is one of the solution to these requirements, however communications in this band is facing new challenges on the climate effect to the channel propagation In this paper, we propose a 5G channel model considering the effect of humidity based on the characteristic of the natural environment of Palembang city. The channel model is represented by power levels and delay called a Power Delay Profile (PDP and is derived based on a series of computer simulations using parameters of nature in Palembang. The 5G channel model is important to further derive the outage performance to be used as the theoretical performance of 5G in Palembang since the the Shannon Channel Capacity Theorem is involved in the derivation. We conduct a series of computer simulations to evaluate the validity of the proposed channel model and its characteristics. We found that humidity affect to the performances, where high humidity makes the performances of outage and BER slightly worse, although the effect may be ignored for some applications. The results of this paper are expected to be the references for the development and implementation of 5G Networks especially at the mm-Wave band in Palembang. |
topic |
channel model pdp outage performance ber fer |
url |
http://publikasi.mercubuana.ac.id/index.php/sinergi/article/view/6227 |
work_keys_str_mv |
AT bengawanalfaresi humidityeffectto5gperformancesunderpalembangchannelmodelat28ghz AT zainudinnawawi humidityeffectto5gperformancesunderpalembangchannelmodelat28ghz AT rezafirsandayamalik humidityeffectto5gperformancesunderpalembangchannelmodelat28ghz AT khoirulanwar humidityeffectto5gperformancesunderpalembangchannelmodelat28ghz AT levyolivianur humidityeffectto5gperformancesunderpalembangchannelmodelat28ghz |
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