Development of Quadratic Programming Algorithm Based on Interior Point Method with Estimation Mechanism of Active Constraints
Abstract
Instability of calculation process and increase of calculation time caused by increasing size of continuous optimization problem remain the major issues to be solved to apply the technique to practical industrial systems. This paper proposes an enhanced quadratic programming algorithm based on interior point method mainly for improvement of calculation stability. The proposed method has dynamic estimation mechanism of active constraints on variables, which fixes the variables getting closer to the upper/lower limit on them and afterwards releases the fixed ones as needed during the optimization process. It is considered as algorithm-level integration of the solution strategy of active-set method into the interior point method framework. We describe some numerical results on commonly-used bench-mark problems called “CUTEr” to show the effectiveness of the proposed method. Furthermore, the test results on large-sized ELD problem (Economic Load Dispatching problems in electric power supply scheduling) are also described as a practical industrial application.
- Publication:
-
IEEJ Transactions on Electronics, Information and Systems
- Pub Date:
- 2010
- DOI:
- 10.1541/ieejeiss.130.1061
- Bibcode:
- 2010ITEIS.130.1061H
- Keywords:
-
- quadratic programming problem;
- complementarity condition;
- interior-point method;
- active-set method;
- condition number;
- economic load dispatching