AbstractThe SOR iteration method is popular for solving many of the large sparse systems of linear algebraic equations which are used to approximate many of the partial differential equations which arise in engineering. We consider the matrix equation Au=w when David Young's SOR theory is applicable (for example, when the matrix A is a symmetric, block tridiagonal matrix). It is well known that using the “optimal relaxation factor” ωb produces the smallest possible spectral radius of the associated SOR iteration matrix (Lω). It is also known that no polynomial acceleration can reduce the size of the spectral radius when the relaxation factor ω=ωb is used. Therefore it has been assumed that it is best to use the combination of the unaccelera...
Abstract In this paper, we present an optimization technique to find the optimal parameters of the A...
AbstractFor the solution of the linear system Ax=(I−T)x=c (1), where T is a weakly cyclic of index p...
For the solution of the linear system Ax = b, where A is block p-cyclic, the block SOR iter-aLive me...
Recently, several proposals for the generalization of Young's SOR method to the saddle point pro...
Recently, several proposals for the generalization of Young's SOR method to the saddle point pro...
The successive over-relaxation (SOR) iteration method for solving linear systems of equations depend...
The successive over-relaxation (SOR) iteration method for solving linear systems of equations depend...
The successive over-relaxation (SOR) iteration method for solving linear systems of equations depend...
AbstractLet v denote the spectral radius of JAB, the block Jacobi iteration matrix. For the classes ...
Consider a SOR-k method for solving a p -cyclic system Ax = b (p \u3e 2) if the p -cyclic matrix...
Let the system matrix of a linear system be p-cyclic and consistently ordered. Under the assumption ...
Let the system matrix of a linear system be p-cyclic and consistently ordered. Under the assumption ...
Let the system matrix of a linear system be p-cyclic and consistently ordered. Under the assumption ...
The classical SOR (Successive Over-Relaxation) method is originated from the dissertation by D. Youn...
In this paper we investigate the performance of four different SOR acceleration techniques on a vari...
Abstract In this paper, we present an optimization technique to find the optimal parameters of the A...
AbstractFor the solution of the linear system Ax=(I−T)x=c (1), where T is a weakly cyclic of index p...
For the solution of the linear system Ax = b, where A is block p-cyclic, the block SOR iter-aLive me...
Recently, several proposals for the generalization of Young's SOR method to the saddle point pro...
Recently, several proposals for the generalization of Young's SOR method to the saddle point pro...
The successive over-relaxation (SOR) iteration method for solving linear systems of equations depend...
The successive over-relaxation (SOR) iteration method for solving linear systems of equations depend...
The successive over-relaxation (SOR) iteration method for solving linear systems of equations depend...
AbstractLet v denote the spectral radius of JAB, the block Jacobi iteration matrix. For the classes ...
Consider a SOR-k method for solving a p -cyclic system Ax = b (p \u3e 2) if the p -cyclic matrix...
Let the system matrix of a linear system be p-cyclic and consistently ordered. Under the assumption ...
Let the system matrix of a linear system be p-cyclic and consistently ordered. Under the assumption ...
Let the system matrix of a linear system be p-cyclic and consistently ordered. Under the assumption ...
The classical SOR (Successive Over-Relaxation) method is originated from the dissertation by D. Youn...
In this paper we investigate the performance of four different SOR acceleration techniques on a vari...
Abstract In this paper, we present an optimization technique to find the optimal parameters of the A...
AbstractFor the solution of the linear system Ax=(I−T)x=c (1), where T is a weakly cyclic of index p...
For the solution of the linear system Ax = b, where A is block p-cyclic, the block SOR iter-aLive me...