Traffic Analysis of Quality of Service (QoS) for Video Conferencing between Main Campus and Sub Campus in Laboratory Scale

Recently, in the distance learning system, video conferencing becomes one of expected course material delivery systems for creating a virtual class such that lecturer and student which are separated at long distance can engage a learning activity as well as face to face learning system. For this rea...

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Main Authors: Amang Sudarsono, Anang Siswanto, Heru Iswanto, Qoirul Setiawan
Format: Article
Language:English
Published: Politeknik Elektronika Negeri Surabaya 2016-04-01
Series:Emitter: International Journal of Engineering Technology
Online Access:http://emitter.pens.ac.id/index.php/emitter/article/view/41
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author Amang Sudarsono
Anang Siswanto
Heru Iswanto
Qoirul Setiawan
author_facet Amang Sudarsono
Anang Siswanto
Heru Iswanto
Qoirul Setiawan
author_sort Amang Sudarsono
collection DOAJ
description Recently, in the distance learning system, video conferencing becomes one of expected course material delivery systems for creating a virtual class such that lecturer and student which are separated at long distance can engage a learning activity as well as face to face learning system. For this reason, the service availability and quality should be able to guaranteed and fulfilled. In this research, we analyze QoS of video conferencing between main campus and sub campus as the implementation of distance learning system in laboratory scale. Our experimental results show that the channel capacity or bandwidth of WAN connection between main campus and sub campus at 128 kbps is able to generate the throughput of video transmission and reception at 281 kbps and 24 kbps, respectively. Meanwhile, throughput of audio transmission and reception is 64 kbps and 26 kbps with the number of total packet loss for video and audio transmission is 84.3% and 29.2%, respectively. In this setting, the total jitter for video and audio transmission is 125 ms and 21 ms, respectively. In this case, there is no packet loss for traffic transmitting and receiving with jitter is not more than 5 ms. We also implemented QoS using Trust CoS model dan Trust DSCP for improving the quality of service in term of jitter up to 12.3% and 22.41%, respectively. Keywords: quality of service, throughput, delay, jitter, packet loss, Trust CoS, Trust DSCP
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spelling doaj.art-1667c3fc3eae473c8f772aa9f94e72422022-12-22T03:10:09ZengPoliteknik Elektronika Negeri SurabayaEmitter: International Journal of Engineering Technology2355-391X2443-11682016-04-013240Traffic Analysis of Quality of Service (QoS) for Video Conferencing between Main Campus and Sub Campus in Laboratory ScaleAmang Sudarsono0Anang Siswanto1Heru Iswanto2Qoirul Setiawan3Electronics Engineering Polytechnic Institute of SurabayaElectronics Engineering Polytechnic Institute of SurabayaElectronics Engineering Polytechnic Institute of SurabayaElectronics Engineering Polytechnic Institute of SurabayaRecently, in the distance learning system, video conferencing becomes one of expected course material delivery systems for creating a virtual class such that lecturer and student which are separated at long distance can engage a learning activity as well as face to face learning system. For this reason, the service availability and quality should be able to guaranteed and fulfilled. In this research, we analyze QoS of video conferencing between main campus and sub campus as the implementation of distance learning system in laboratory scale. Our experimental results show that the channel capacity or bandwidth of WAN connection between main campus and sub campus at 128 kbps is able to generate the throughput of video transmission and reception at 281 kbps and 24 kbps, respectively. Meanwhile, throughput of audio transmission and reception is 64 kbps and 26 kbps with the number of total packet loss for video and audio transmission is 84.3% and 29.2%, respectively. In this setting, the total jitter for video and audio transmission is 125 ms and 21 ms, respectively. In this case, there is no packet loss for traffic transmitting and receiving with jitter is not more than 5 ms. We also implemented QoS using Trust CoS model dan Trust DSCP for improving the quality of service in term of jitter up to 12.3% and 22.41%, respectively. Keywords: quality of service, throughput, delay, jitter, packet loss, Trust CoS, Trust DSCPhttp://emitter.pens.ac.id/index.php/emitter/article/view/41
spellingShingle Amang Sudarsono
Anang Siswanto
Heru Iswanto
Qoirul Setiawan
Traffic Analysis of Quality of Service (QoS) for Video Conferencing between Main Campus and Sub Campus in Laboratory Scale
Emitter: International Journal of Engineering Technology
title Traffic Analysis of Quality of Service (QoS) for Video Conferencing between Main Campus and Sub Campus in Laboratory Scale
title_full Traffic Analysis of Quality of Service (QoS) for Video Conferencing between Main Campus and Sub Campus in Laboratory Scale
title_fullStr Traffic Analysis of Quality of Service (QoS) for Video Conferencing between Main Campus and Sub Campus in Laboratory Scale
title_full_unstemmed Traffic Analysis of Quality of Service (QoS) for Video Conferencing between Main Campus and Sub Campus in Laboratory Scale
title_short Traffic Analysis of Quality of Service (QoS) for Video Conferencing between Main Campus and Sub Campus in Laboratory Scale
title_sort traffic analysis of quality of service qos for video conferencing between main campus and sub campus in laboratory scale
url http://emitter.pens.ac.id/index.php/emitter/article/view/41
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AT heruiswanto trafficanalysisofqualityofserviceqosforvideoconferencingbetweenmaincampusandsubcampusinlaboratoryscale
AT qoirulsetiawan trafficanalysisofqualityofserviceqosforvideoconferencingbetweenmaincampusandsubcampusinlaboratoryscale