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Choosing Augmentation Parameters in OSQP-A New Approach based on Conjugate Directions

  • Avinash Kumar
  • CentraleSup lec and Inria Saclay

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Résumé

OSQP is a general purpose solver, based upon the alternating direction method of multipliers, for convex quadratic programs. Within this solver's algorithm, the idea of the augmented Lagrangian with a penalty parameter- a parameter which captures the relative weight-age on the objective function and the constraints of the problem in-hand- is utilized to develop an algorithm with so-called augmentation parameters. Although, the selection of these parameters is a crucial task, the optimal way to do the selection is not yet known. This work proposes a new method to select these parameters by utilizing the information of the conjugate directions of the coefficient matrix of a linear system of equations present in the algorithm. This selection makes it possible to cache these conjugate directions, instead of computing them at each iteration, resulting in a faster computation of the solution of the linear system, thus reducing the overall computation time. This reduction is demonstrated by a numerical example by comparing the total time it takes for the algorithms to converge sufficiently close to the optimal solution.

langue originaleAnglais
titre2025 29th International Conference on System Theory, Control and Computing, ICSTCC 2025 - Proceedings
EditeurInstitute of Electrical and Electronics Engineers Inc.
Pages451-455
Nombre de pages5
ISBN (Electronique)9798331596217
Les DOIs
étatPublié - 1 janv. 2025
Modification externeOui
Evénement2025 29th International Conference on System Theory, Control and Computing, ICSTCC 2025 - Cluj-Napoca, Roumanie
Durée: 9 oct. 202511 oct. 2025

Série de publications

Nom2025 29th International Conference on System Theory, Control and Computing, ICSTCC 2025 - Proceedings

Une conférence

Une conférence2025 29th International Conference on System Theory, Control and Computing, ICSTCC 2025
Pays/TerritoireRoumanie
La villeCluj-Napoca
période9/10/2511/10/25

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