Route guidance systems (RGSs), due to recent advances in technology, are emerging as a low‐cost and fast solution to the congestion problem in urban areas. Route guidance with the aim of minimising total travel time (system optimum) causes longer paths, and consequently, more unfairness between individual users. Moreover, more congestion is created when guiding the users to their shortest paths (user equilibrium) to provide fairness among them. Therefore, an RGS that is able to combine these two inconsistent objectives, i.e. minimising total congestion of the network, and travel unfairness between individual travellers, would be of great value. To this end, a forced‐node RGS is proposed in this study. The guidance task is delegated to some of the network nodes (e.g. intersections and roundabouts) in a distributed and autonomous way, similar to the routing operation in computer networks. Then, by applying a novel idea in transforming the demand rates, a non‐recursive algorithm is proposed and compared with well‐known traffic assignment methods; i.e. the classic user equilibrium and system optimal traffic assignment methods. Computational results affirmed the applicability of the forced‐node RGS through the incorporation of both system and users’ benefits in different proportions.


    Access

    Download


    Export, share and cite



    Title :

    Forced‐node route guidance system: incorporating both user equilibrium and system optimal benefits



    Published in:

    Publication date :

    2019-12-01


    Size :

    9 pages




    Type of media :

    Article (Journal)


    Type of material :

    Electronic Resource


    Language :

    English




    Forced-node route guidance system: incorporating both user equilibrium and system optimal benefits

    Rahimi-Farahani, Hossein / Rassafi, Amir Abbas / Mirbaha, Babak | IET | 2019

    Free access

    Dynamic Modeling of Traffic Networks in Route Guidance For System Time Optimal and User Time Equilibrium

    Yu, L. / Van Aerde, M. / Intelligent Transportation Society of America | British Library Conference Proceedings | 1996


    Lane based optimal route guidance system

    European Patent Office | 2020

    Free access

    Lane based optimal route guidance system

    CHOI YONGGIL | European Patent Office | 2019

    Free access