The paper considers an iterative method for solving systems of linear equations (SLE), which applies multiple displacement of the approximation solution point in the direction of the final solution, simultaneously reducing the entire residual of the system of equations. The method reduces the requirements for the matrix of SLE. The following SLE property is used: the point is located farther from the system solution result compared to the point projection onto the equation. Developing the approach, the main emphasis is made on reduction of requirements towards the matrix of the system of equations, allowing for higher volume of calculations
AbstractAn algorithm is presented for the general solution of a set of linear equations Ax=b. The me...
AbstractA new iterative method for the solution of linear systems, based upon a new splitting of the...
This graduate-level text examines the practical use of iterative methods in solving large, sparse sy...
The paper proposes an iterative approach for linear system solving, rooted in the approximation solu...
AbstractThe solution of linear systems of equations using various projection algorithms is considere...
AbstractThe solution of linear systems of equations using a 2-dimensional x-projection method is pre...
AbstractWe consider linear systems of equations and solution approximations derived by projection on...
AbstractIn Ujević [A new iterative method for solving linear systems, Appl. Math. Comput. 179 (2006)...
An algorithm proposed by Lanczos [1] for the generation of an approximate solution of a large scale ...
AbstractThe solution of linear systems of equations using a 4-dimensional x-projection method is pre...
The purpose of this paper is to investigate a few of the more popular methods for finding the soluti...
AbstractWe study the solution of consistent, semidefinite and symmetric linear systems by iterative ...
Iterative methods for solving linear systems of equations can be very efficient if the structure of ...
The solution of dense linear systems received much attention after the second world war, and by the ...
Several mesh-based techniques in computer graphics such as shape deformation, mesh editing, animatio...
AbstractAn algorithm is presented for the general solution of a set of linear equations Ax=b. The me...
AbstractA new iterative method for the solution of linear systems, based upon a new splitting of the...
This graduate-level text examines the practical use of iterative methods in solving large, sparse sy...
The paper proposes an iterative approach for linear system solving, rooted in the approximation solu...
AbstractThe solution of linear systems of equations using various projection algorithms is considere...
AbstractThe solution of linear systems of equations using a 2-dimensional x-projection method is pre...
AbstractWe consider linear systems of equations and solution approximations derived by projection on...
AbstractIn Ujević [A new iterative method for solving linear systems, Appl. Math. Comput. 179 (2006)...
An algorithm proposed by Lanczos [1] for the generation of an approximate solution of a large scale ...
AbstractThe solution of linear systems of equations using a 4-dimensional x-projection method is pre...
The purpose of this paper is to investigate a few of the more popular methods for finding the soluti...
AbstractWe study the solution of consistent, semidefinite and symmetric linear systems by iterative ...
Iterative methods for solving linear systems of equations can be very efficient if the structure of ...
The solution of dense linear systems received much attention after the second world war, and by the ...
Several mesh-based techniques in computer graphics such as shape deformation, mesh editing, animatio...
AbstractAn algorithm is presented for the general solution of a set of linear equations Ax=b. The me...
AbstractA new iterative method for the solution of linear systems, based upon a new splitting of the...
This graduate-level text examines the practical use of iterative methods in solving large, sparse sy...