Various scenarios prediction of Contraflow operation under heterogeneous traffic condition by using VISSIM microscopic simulation

Prior studies showed that most evacuation contraflow designs have never been implemented. As a result, the effectiveness of these contraflow designs remains unknown. In this paper, VISSIM simulation has been used to achieve the possibility for predicting various scenarios at Kajang-Cheras highway co...

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Published in:International Journal of Engineering and Technology(UAE)
Main Author: Jehad A.E.; Ismail A.; Borhan M.N.; Ishak S.Z.
Format: Article
Language:English
Published: Science Publishing Corporation Inc 2018
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85058419238&doi=10.14419%2fijet.v7i4.28.22611&partnerID=40&md5=ff0757efe7c26638173a13dd36295ebd
id 2-s2.0-85058419238
spelling 2-s2.0-85058419238
Jehad A.E.; Ismail A.; Borhan M.N.; Ishak S.Z.
Various scenarios prediction of Contraflow operation under heterogeneous traffic condition by using VISSIM microscopic simulation
2018
International Journal of Engineering and Technology(UAE)
7
4
10.14419/ijet.v7i4.28.22611
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85058419238&doi=10.14419%2fijet.v7i4.28.22611&partnerID=40&md5=ff0757efe7c26638173a13dd36295ebd
Prior studies showed that most evacuation contraflow designs have never been implemented. As a result, the effectiveness of these contraflow designs remains unknown. In this paper, VISSIM simulation has been used to achieve the possibility for predicting various scenarios at Kajang-Cheras highway contralane by using dynamic assignment model in order to establish best contraflow alternative path design operation. Method of Effectiveness (MOE) for dynamic assignment model (travel time, queue length, vehicles speed, delay time, fuel consumption, and CO emission) parameters has been analyzed first to assess the performance level of Contraflow operation. Seven alternative paths for the same contralane have been considered to achieve less travel time and queue length hence the reduction of fuel consumption and CO emissions that related to long queue length. Connector's number 2 and 5 indicate the best alternative paths with the presence of the original connector (number 1) since contralane user realize that there are multi connectors to contralane ahead. Contra-flow lane problems remain challenging for optimizing the best evacuation design system since the heterogeneous characteristics and no lane discipline domain on this highway at peak-hour. However, Contraflow freeway evacuation plan has been shown to be a successful remedy method to rapidly and efficiently move large numbers of vehicles during emergency situations. © 2018 Authors.
Science Publishing Corporation Inc
2227524X
English
Article

author Jehad A.E.; Ismail A.; Borhan M.N.; Ishak S.Z.
spellingShingle Jehad A.E.; Ismail A.; Borhan M.N.; Ishak S.Z.
Various scenarios prediction of Contraflow operation under heterogeneous traffic condition by using VISSIM microscopic simulation
author_facet Jehad A.E.; Ismail A.; Borhan M.N.; Ishak S.Z.
author_sort Jehad A.E.; Ismail A.; Borhan M.N.; Ishak S.Z.
title Various scenarios prediction of Contraflow operation under heterogeneous traffic condition by using VISSIM microscopic simulation
title_short Various scenarios prediction of Contraflow operation under heterogeneous traffic condition by using VISSIM microscopic simulation
title_full Various scenarios prediction of Contraflow operation under heterogeneous traffic condition by using VISSIM microscopic simulation
title_fullStr Various scenarios prediction of Contraflow operation under heterogeneous traffic condition by using VISSIM microscopic simulation
title_full_unstemmed Various scenarios prediction of Contraflow operation under heterogeneous traffic condition by using VISSIM microscopic simulation
title_sort Various scenarios prediction of Contraflow operation under heterogeneous traffic condition by using VISSIM microscopic simulation
publishDate 2018
container_title International Journal of Engineering and Technology(UAE)
container_volume 7
container_issue 4
doi_str_mv 10.14419/ijet.v7i4.28.22611
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85058419238&doi=10.14419%2fijet.v7i4.28.22611&partnerID=40&md5=ff0757efe7c26638173a13dd36295ebd
description Prior studies showed that most evacuation contraflow designs have never been implemented. As a result, the effectiveness of these contraflow designs remains unknown. In this paper, VISSIM simulation has been used to achieve the possibility for predicting various scenarios at Kajang-Cheras highway contralane by using dynamic assignment model in order to establish best contraflow alternative path design operation. Method of Effectiveness (MOE) for dynamic assignment model (travel time, queue length, vehicles speed, delay time, fuel consumption, and CO emission) parameters has been analyzed first to assess the performance level of Contraflow operation. Seven alternative paths for the same contralane have been considered to achieve less travel time and queue length hence the reduction of fuel consumption and CO emissions that related to long queue length. Connector's number 2 and 5 indicate the best alternative paths with the presence of the original connector (number 1) since contralane user realize that there are multi connectors to contralane ahead. Contra-flow lane problems remain challenging for optimizing the best evacuation design system since the heterogeneous characteristics and no lane discipline domain on this highway at peak-hour. However, Contraflow freeway evacuation plan has been shown to be a successful remedy method to rapidly and efficiently move large numbers of vehicles during emergency situations. © 2018 Authors.
publisher Science Publishing Corporation Inc
issn 2227524X
language English
format Article
accesstype
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