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IMPROVING SOLVER PERFORMANCE THROUGH REDUNDANCY
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作者 Eduardo Lalla-Ruiz Stefan Voβ 《Journal of Systems Science and Systems Engineering》 SCIE EI CSCD 2016年第3期303-325,共23页
It is well known that hierarchies of mathematical programming formulatlons with different numbers of variables and constraints have a considerable impact regarding the quality of solutions obtained once these formulat... It is well known that hierarchies of mathematical programming formulatlons with different numbers of variables and constraints have a considerable impact regarding the quality of solutions obtained once these formulations are fed to a commercial solver. In addition, even if dimensions are kept the same, changes in formulations may largely influence solvability and quality of results. This becomes evident especially if redundant constraints are used. We propose a related framework for information collection based on these constraints. We exemplify by means of a well-known combinatorial optimization problem from the knapsack problem family, i.e., the multidimensional multiple-choice knapsack problem (MMKP). This incorporates a relationship of the MMKP to some generalized set partitioning problems. Moreover, we investigate an application in maritime shipping and logistics by means of the dynamic berth allocation problem (DBAP), where optimal solutions are reached from the root node within the solver. 展开更多
关键词 Erraticism redundant constraints multidimensional multiple-choice knapsack problem dynamic berth allocation problem
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