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Projected Dynamical Systems in the Formulation, Stability Analysis, and Computation of Fixed-Demand Traffic Network Equilibria

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  • Anna Nagurney

    (Department of Finance and Operations Management, School of Management, University of Massachusetts, Amherst, Massachusetts 01003)

  • Ding Zhang

    (School of Business, State University of New York, Oswego, New York 13126)

Abstract

This paper proposes, for a fixed demand traffic network problem, a route travel choice adjustment process formulated as a projected dynamical system, whose stationary points correspond to the traffic equilibria. Stability analysis is then conducted in order to investigate conditions under which the route travel choice adjustment process approaches equilibria. We also propose a discrete time algorithm, the Euler method, for the computation of the traffic equilibrium and provide convergence results. The notable feature of the algorithm is that it decomposes the traffic problem into network subproblems of special structure, each of which can then be solved simultaneously and in closed form using exact equilibration. Finally, we illustrate the computational performance of the Euler method through various numerical examples.

Suggested Citation

  • Anna Nagurney & Ding Zhang, 1997. "Projected Dynamical Systems in the Formulation, Stability Analysis, and Computation of Fixed-Demand Traffic Network Equilibria," Transportation Science, INFORMS, vol. 31(2), pages 147-158, May.
  • Handle: RePEc:inm:ortrsc:v:31:y:1997:i:2:p:147-158
    DOI: 10.1287/trsc.31.2.147
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