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    Development of a Signal Optimization Model for Diverging Diamond Interchange

    Source: Journal of Transportation Engineering, Part A: Systems:;2014:;Volume ( 140 ):;issue: 005
    Author:
    Xianfeng Yang
    ,
    Gang-Len Chang
    ,
    Saed Rahwanji
    DOI: 10.1061/(ASCE)TE.1943-5436.0000657
    Publisher: American Society of Civil Engineers
    Abstract: As one of the most popular unconventional interchange designs, diverging diamond intersection (DDI) has received increased attention over the past decade. Through a reverse operation of traffic movements between its two crossover intersections, DDI can accommodate more traffic movements within each phase. To design an effective signal plan for DDIs, one needs to address the following two critical issues: (1) how to select the common cycle length and green splits at each crossover intersection under different geometric conditions, and (2) how to coordinate a DDI’s two crossover intersections with its adjacent conventional intersections. To contend with these issues, this paper presents an optimization model with the objective of maximizing intersection capacity to yield the optimal green splits and cycle length. Also, in view of the potentially large left-turn traffic volumes from the freeway off-ramps, this study has further modified a model to provide progressions to both left-turn and through traffic paths. Using simulation software as an unbiased tool, this study has conducted extensive simulation comparisons between the optimized signal plans and the results from signal optimization software under various traffic scenarios. The experimental results confirm the promising properties of the proposed signal models for DDI, especially if the traffic progression between two crossover intersections is the major concern.
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      Development of a Signal Optimization Model for Diverging Diamond Interchange

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    http://yetl.yabesh.ir/yetl1/handle/yetl/72851
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    • Journal of Transportation Engineering, Part A: Systems

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    contributor authorXianfeng Yang
    contributor authorGang-Len Chang
    contributor authorSaed Rahwanji
    date accessioned2017-05-08T22:10:32Z
    date available2017-05-08T22:10:32Z
    date copyrightMay 2014
    date issued2014
    identifier other37190012.pdf
    identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/72851
    description abstractAs one of the most popular unconventional interchange designs, diverging diamond intersection (DDI) has received increased attention over the past decade. Through a reverse operation of traffic movements between its two crossover intersections, DDI can accommodate more traffic movements within each phase. To design an effective signal plan for DDIs, one needs to address the following two critical issues: (1) how to select the common cycle length and green splits at each crossover intersection under different geometric conditions, and (2) how to coordinate a DDI’s two crossover intersections with its adjacent conventional intersections. To contend with these issues, this paper presents an optimization model with the objective of maximizing intersection capacity to yield the optimal green splits and cycle length. Also, in view of the potentially large left-turn traffic volumes from the freeway off-ramps, this study has further modified a model to provide progressions to both left-turn and through traffic paths. Using simulation software as an unbiased tool, this study has conducted extensive simulation comparisons between the optimized signal plans and the results from signal optimization software under various traffic scenarios. The experimental results confirm the promising properties of the proposed signal models for DDI, especially if the traffic progression between two crossover intersections is the major concern.
    publisherAmerican Society of Civil Engineers
    titleDevelopment of a Signal Optimization Model for Diverging Diamond Interchange
    typeJournal Paper
    journal volume140
    journal issue5
    journal titleJournal of Transportation Engineering, Part A: Systems
    identifier doi10.1061/(ASCE)TE.1943-5436.0000657
    treeJournal of Transportation Engineering, Part A: Systems:;2014:;Volume ( 140 ):;issue: 005
    contenttypeFulltext
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