Deprecated: $wgMWOAuthSharedUserIDs=false is deprecated, set $wgMWOAuthSharedUserIDs=true, $wgMWOAuthSharedUserSource='local' instead [Called from MediaWiki\HookContainer\HookContainer::run in /var/www/html/w/includes/HookContainer/HookContainer.php at line 135] in /var/www/html/w/includes/Debug/MWDebug.php on line 372
scientific article; zbMATH DE number 3636189 - MaRDI portal

scientific article; zbMATH DE number 3636189

From MaRDI portal
Publication:4196544

zbMath0409.15010MaRDI QIDQ4196544

Nobuo Shinozaki, Masaaki Sibuya

Publication date: 1974


Title: zbMATH Open Web Interface contents unavailable due to conflicting licenses.



Related Items

The iterative algorithm for solving a class of generalized coupled Sylvester-transpose equations over centrosymmetric or anti-centrosymmetric matrixThe modified conjugate gradient methods for solving a class of generalized coupled Sylvester-transpose matrix equationsA simple method for solving matrix equations \(AXB = D\) and \(GXH = C\)An efficient algorithm for the least-squares reflexive solution of the matrix equation \(A_{1}XB_{1} = C_{1}, A_{2}XB_{2} = C_{2}\)Iterative method to solve the generalized coupled Sylvester-transpose linear matrix equations over reflexive or anti-reflexive matrixFurther results on the reverse-order lawThe matrix equation AXB+CYD=EAn expression of the general common least-squares solution to a pair of matrix equations with applicationsA pair of simultaneous linear matrix equations \(A_ 1XB_ 1=C_ 1,A_ 2XB_ 2=C_ 2\) and a matrix programming problemThe iteration solution of matrix equation \(A X B = C\) subject to a linear matrix inequality constraintLeast squares Hermitian solution of the matrix equation \((AXB,CXD)=(E,F)\) with the least norm over the skew field of quaternionsAn iterative algorithm for the generalized reflexive solution of the matrix equations \(AXB = E, CXD = F\)The general solution to a system of real quaternion matrix equationsAn iterative algorithm for the least squares bisymmetric solutions of the matrix equations \(A_{1}XB_{1}=C_{1},A_{2}XB_{2}=C_{2}\)Cramer's rule for the general solution to a restricted system of quaternion matrix equationsIterative solution to a system of matrix equationsThe reflexive and anti-reflexive solutions of a linear matrix equation and systems of matrix equationsA representation of the general common solution to the matrix equations \(A_1XB_1=C_1\) and \(A_2XB_2=C_2\) with applicationsThe matrix iterative methods for solving a class of generalized coupled Sylvester-conjugate linear matrix equationsModified conjugate gradient method for obtaining the minimum-norm solution of the generalized coupled Sylvester-conjugate matrix equationsBCR method for solving generalized coupled Sylvester equations over centrosymmetric or anti-centrosymmetric matrixA system of matrix equations and a linear matrix equation over arbitrary regular rings with identityCramer's rule for a system of quaternion matrix equations with applicationsIterative methods to solve the generalized coupled Sylvester-conjugate matrix equations for obtaining the centrally symmetric (centrally antisymmetric) matrix solutionsDeterminantal representations of solutions to systems of two-sided quaternion matrix equationsLeast-squares solution with the minimum-norm for the matrix equation \((A\times B,G\times H) = (C,D)\)