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A semi-analytical approach for solving the bottleneck model with general user heterogeneity
Institution:1. SBA School of Science and Engineering, Lahore University, Department of Computer Science, Lahore, Pakistan;2. Department of Civil and Environmental Engineering, Massachusetts Institute of Technology, Cambridge, MA 02139, USA;1. School of Architecture, Civil and Environmental Engineering, Urban Transport Systems Laboratory Ecole Polytechnique Fédérale de Lausanne (EPFL) GC C2 389, Station 18, Lausanne 1015, Switzerland;2. Ecole Normale Supérieure de Cachan, CES - Université Paris-Saclay, 61, avenue du Président Wilson, 94230 Cachan, France
Abstract:This paper proposes a novel semi-analytical approach for solving the dynamic user equilibrium (DUE) of a bottleneck model with general heterogeneous users. The proposed approach makes use of the analytical solutions from the bottleneck analysis to create an equivalent assignment problem that admits closed-form commute cost functions. The equivalent problem is a static and asymmetric traffic assignment problem, which can be formulated as a variational inequality problem (VIP). This approach provides a new tool to analyze the properties of the bottleneck model with general heterogeneity, and to design efficient solution methods. In particular, the existence and uniqueness of the DUE solution can be established using the P-property of the Jacobian matrix. Our numerical experiments show that a simple decomposition algorithm is able to quickly solve the equivalent VIP to high precision. The proposed VIP formation is also extended to address simultaneous departure time and route choice in a single O–D origin-destination network with multiple parallel routes.
Keywords:Bottleneck model  General heterogeneity  Dynamic user equilibrium  Variational inequality problem  P-property
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