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  4. Enhancements of discretization approaches for non-convex mixed-integer quadratically constrained quadratic programming: part II
 
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2024
Journal Article
Title

Enhancements of discretization approaches for non-convex mixed-integer quadratically constrained quadratic programming: part II

Abstract
This is Part II of a study on mixed-integer programming (MIP) relaxation techniques for the solution of non-convex mixed-integer quadratically constrained quadratic programs (MIQCQPs). We set the focus on MIP relaxation methods for non-convex continuous variable products where both variables are bounded and extend the well-known MIP relaxation normalized multiparametric disaggregation technique(NMDT), applying a sophisticated discretization to both variables. We refer to this approach as doubly discretized normalized multiparametric disaggregation technique (D-NMDT). In a comprehensive theoretical analysis, we underline the theoretical advantages of the enhanced method D-NMDT compared to NMDT. Furthermore, we perform a broad computational study to demonstrate its effectiveness in terms of producing tight dual bounds for MIQCQPs. Finally, we compare D-NMDT to the separable MIP relaxations from Part I and a state-of-the-art MIQCQP solver.
Author(s)
Beach, Benjamin
Burlacu, Robert
Fraunhofer-Institut für Integrierte Schaltungen IIS  
Bärmann, Andreas
Hager, Lukas
Hildebrand, Robert
Journal
Computational Optimization and Applications  
Open Access
DOI
10.1007/s10589-024-00554-y
Additional link
Full text
Language
English
Fraunhofer-Institut für Integrierte Schaltungen IIS  
Keyword(s)
  • Binarization

  • Discretization

  • MIP Relaxations

  • Piecewise linear approximation

  • Quadratic programming

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