The traffic equilibrium problem with nonadditive path costs
Author(s) -
Steven A. Gabriel,
David Bernstein
Publication year - 1995
Publication title -
osti oai (u.s. department of energy office of scientific and technical information)
Language(s) - English
Resource type - Reports
DOI - 10.2172/510386
Subject(s) - complementarity (molecular biology) , mathematical optimization , path (computing) , additive function , sequential quadratic programming , nonlinear complementarity problem , computer science , mathematics , mixed complementarity problem , nonlinear system , quadratic programming , physics , mathematical analysis , genetics , quantum mechanics , biology , programming language
In this paper the authors present a version of the (static) traffic equilibrium problem in which the cost incurred on a path is not simply the sum of the costs on the arcs that constitute that path. The authors motivate this nonadditive version of the problem by describing several situations in which the classical additivity assumption fails. They also present an algorithm for solving nonadditive problems that is based on the recent NE/SQP algorithm, a fast and robust method for the nonlinear complementarity problem. Finally, they present a small example that illustrates both the importance of using nonadditive costs and the effectiveness of the NE/SQP method
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