A new simplicial variable dimension algorithm to find equilibria on the product space of unit simplices
Author(s) -
T.M. Doup,
A.J.J. Talman
Publication year - 1987
Publication title -
mathematical programming
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.358
H-Index - 131
eISSN - 1436-4646
pISSN - 0025-5610
DOI - 10.1007/bf02591741
Subject(s) - mathematics , simplex , triangulation , vertex (graph theory) , algorithm , dimension (graph theory) , nonlinear complementarity problem , combinatorics , computation , product (mathematics) , simplex algorithm , variable (mathematics) , mathematical optimization , nonlinear system , linear programming , complementarity theory , geometry , graph , physics , quantum mechanics , mathematical analysis
A new simplicial variable dimension restart algorithm is introduced to solve the nonlinear complementarity problem on the product spaceS of unit simplices. The triangulation which underlies the algorithm differs from the triangulations ofS used thus far. Moreover, the number of rays along which the algorithm can leave the arbitrarily chosen starting point is much larger. More precisely, there is a ray leading from the starting point to each vertex ofS. In caseS is the product ofn one-dimensional unit simplices the alogrithm is similar to the octahedral algorithm onR n having 2 n rays. Also, the accuracy of an approximate solution in the terminal simplex of the algorithm is in general better than for the other algorithms onS. Computational results will show that the number of iterations for the new algorithm is much less. The examples concern the computation of equilibria in noncooperative games, exchange economies and trade models.
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