A class of Uzawa-SOR methods for saddle point problems
In this paper, we consider a class of Uzawa-SOR methods for saddle point problems, and prove the convergence of the proposed methods. We solve a lower triangular system per iteration in the proposed methods, instead of solving a linear equation Az = b . Actually, the new methods can be considered as...
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Published in | Applied mathematics and computation Vol. 216; no. 7; pp. 2163 - 2168 |
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Main Authors | , |
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Language | English |
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01.06.2010
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ISSN | 0096-3003 1873-5649 |
DOI | 10.1016/j.amc.2010.03.051 |
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Abstract | In this paper, we consider a class of Uzawa-SOR methods for saddle point problems, and prove the convergence of the proposed methods. We solve a lower triangular system per iteration in the proposed methods, instead of solving a linear equation
Az
=
b
. Actually, the new methods can be considered as an inexact iteration method with the Uzawa as the outer iteration and the SOR as the inner iteration. Although the proposed methods cannot achieve the same convergence rate as the GSOR methods proposed by Bai et al. [Z.-Z. Bai, B.N. Parlett, Z.-Q. Wang, On generalized successive overrelaxation methods for augmented linear systems, Numer. Math. 102 (2005) 1–38], but our proposed methods have less workloads per iteration step. Experimental results show that our proposed methods are feasible and effective. |
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AbstractList | In this paper, we consider a class of Uzawa-SOR methods for saddle point problems, and prove the convergence of the proposed methods. We solve a lower triangular system per iteration in the proposed methods, instead of solving a linear equation Az=b. Actually, the new methods can be considered as an inexact iteration method with the Uzawa as the outer iteration and the SOR as the inner iteration. Although the proposed methods cannot achieve the same convergence rate as the GSOR methods proposed by Bai et al. [Z.-Z. Bai, B.N. Parlett, Z.-Q. Wang, On generalized successive overrelaxation methods for augmented linear systems, Numer. Math. 102 (2005) 1-38], but our proposed methods have less workloads per iteration step. Experimental results show that our proposed methods are feasible and effective. AMS Subject Classification (2000): 65F10; 65F50 In this paper, we consider a class of Uzawa-SOR methods for saddle point problems, and prove the convergence of the proposed methods. We solve a lower triangular system per iteration in the proposed methods, instead of solving a linear equation Az = b . Actually, the new methods can be considered as an inexact iteration method with the Uzawa as the outer iteration and the SOR as the inner iteration. Although the proposed methods cannot achieve the same convergence rate as the GSOR methods proposed by Bai et al. [Z.-Z. Bai, B.N. Parlett, Z.-Q. Wang, On generalized successive overrelaxation methods for augmented linear systems, Numer. Math. 102 (2005) 1–38], but our proposed methods have less workloads per iteration step. Experimental results show that our proposed methods are feasible and effective. |
Author | Shang, Jijuan Zhang, Jianjun |
Author_xml | – sequence: 1 givenname: Jianjun surname: Zhang fullname: Zhang, Jianjun email: jjzhang@staff.shu.edu.cn – sequence: 2 givenname: Jijuan surname: Shang fullname: Shang, Jijuan email: shangjijuan001@163.com |
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Cites_doi | 10.1007/BF02510258 10.1016/j.amc.2008.06.010 10.1016/S0377-0427(98)00114-9 10.1023/A:1021965717530 10.1007/BF01935013 10.1016/j.amc.2006.05.094 10.1016/j.cam.2009.05.012 10.1137/S0895479801395458 10.1016/j.laa.2008.01.018 10.1137/0731085 10.1007/BF01389335 10.1017/S0962492904000212 10.1007/s00211-005-0643-0 10.1016/j.amc.2004.11.016 |
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Keywords | 65F50 Uzawa method 65F10 Conjugate gradient methods Iterative methods SOR methods Saddle point problems Convergence Conjugate gradient method Convergence acceleration Numerical linear algebra Iterative method Iteration Direct method Experimental result Numerical analysis Linear system Linear equation Matrix inversion Applied mathematics Overrelaxation method Convergence rate |
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SubjectTerms | 65F10 65F50 Acceleration of convergence Algebra Algebraic geometry Classification Conjugate gradient methods Convergence Exact sciences and technology Iterative methods Linear systems Mathematical analysis Mathematical models Mathematics Numerical analysis Numerical analysis. Scientific computation Numerical linear algebra Saddle point problems Saddle points Sciences and techniques of general use SOR methods Uzawa method Workload |
Title | A class of Uzawa-SOR methods for saddle point problems |
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