DocumentCode
1711660
Title
Analysis of Numeric Conditioning of Hessian Matrix of Lagrangian Via Singular Values
Author
de Sousa, V.A. ; Baptista, E.C. ; da Costa, Geraldo R. M.
Author_Institution
Electr. Eng. Dept., Univ. of Sao Paulo, Sao Paulo
fYear
2007
Firstpage
98
Lastpage
102
Abstract
This paper presents an analyze of numeric conditioning of the Hessian matrix of Lagrangian of modified barrier function Lagrangian method (MBFL) and primal-dual logarithmic barrier method (PDLB), which are obtained in the process of solution of an optimal power flow problem (OPF). This analyze is done by a comparative study through the singular values decomposition (SVD) of those matrixes. In the MBLF method the inequality constraints are treated by the modified barrier and PDLB methods. The inequality constraints are transformed into equalities by introducing positive auxiliary variables and are perturbed by the barrier parameter. The first- order necessary conditions of the Lagrangian function are solved by Newton´s method. The perturbation of the auxiliary variables results in an expansion of the feasible set of the original problem, allowing the limits of the inequality constraints to be reached. The electric systems IEEE 14, 162 and 300 buses were used in the comparative analysis.
Keywords
Hessian matrices; Newton method; load flow; singular value decomposition; Hessian matrix; Newton´s method; modified barrier function Lagrangian method; optimal power flow problem; primal-dual logarithmic barrier method; singular values decomposition; Functional programming; Lagrangian functions; Linear matrix inequalities; Load flow; Matrix decomposition; Newton method; Propagation losses; Robustness; System testing; Voltage control; Newton´s method; Optimal power flow; modified barrier function; nonlinear programming;
fLanguage
English
Publisher
ieee
Conference_Titel
Power Tech, 2007 IEEE Lausanne
Conference_Location
Lausanne
Print_ISBN
978-1-4244-2189-3
Electronic_ISBN
978-1-4244-2190-9
Type
conf
DOI
10.1109/PCT.2007.4538299
Filename
4538299
Link To Document