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    Expressing Complementarity Problems in an Algebraic Modeling Language and Communicating Them to Solvers

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    Expressing Complementarity Proglems in an Algebraic Modeling Language and Communicationg Them to Solvers (297.6Kb)
    Date
    1998
    Author
    Gay, David
    Fourer, Robert
    Ferris, Michael
    Metadata
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    Abstract
    Diverse problems in optimization, engineering, and exonomics have natural formulations in terms of complementarity conditions, which state (in their simplest form) that either a certain non-negative variable must be zero or a corresponding inequality must hold with equality, or both. A variety of algorithms have been devised for solving problems expressed in terms of complementarity conditions. It is thus attractive to consider extending algebraic modeling languages, which are widely used for sending ordinary equations and inequality constrains to solvers, so that they can express complementarity problems directly. We describe an extension to the AMPL modeling language that can express the most common complementarity conditions in a concise and flexible way, through the introduction of a single new "complements" operator. We present details of an efficient implementation that incorporates an augmented presolve phase to simplify complementarity problems, and that converts complementarity conditions to a canonical form convenient to solvers
    Subject
    optimization
    algebraic modeling languages
    complementarity
    Permanent Link
    http://digital.library.wisc.edu/1793/64380
    Type
    Technical Report
    Citation
    98-02
    Part of
    • Math Prog Technical Reports

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