Matrix::EigSymRange Method

Overload List

#SignatureDescription
1TMtx *EigSymRange(TVec *D, TMtx *V, int LowRange, int HighRange, double Tolerance = 0) const;Computes eigenvalues and eigenvectors of a symmetric (Hermitian) matrix between min and max Index.
2TMtx *EigSymRange(TVec *D, int LowRange, int HighRange, double Tolerance = 0) const;Computes eigenvalues of a symmetric (Hermitian) matrix between min and max Index.

Overload 1: TMtx *EigSymRange(TVec *D, TMtx *V, int LowRange, int HighRange, double Tolerance = 0) const;

Computes eigenvalues and eigenvectors of a symmetric (Hermitian) matrix between min and max Index.

#NameTypeDescription
1DTVec *
2VTMtx *
3LowRangeint
4HighRangeint
5Tolerance = 0double
Remarks:

The computation is based on Relatively Robust Representations.

Tolerance parameter specifies the absolute error tolerance for the eigenvalues. An approximate eigenvalue is accepted as converged when it is determined to lie in an interval [a,b] of width less than or equal to

Tolerance + EPS / max( |a|,|b| ) ,

where EPS is the machine precision. If Tolerance is less than or equal to zero, then EPS*|T| will be used in its place, where |T| is the 1-norm of the tridiagonal matrix obtained by reducing A to tridiagonal form.

Eigenvalues will be computed most accurately when Tolerance is set to twice the underflow threshold, not zero. If this routine returns fails , indicating that some eigenvectors did not converge, try setting Tolerance to UnderflowThreshold.

Declared in Dew::Math::Matrix · Dew.Math/MtxExpr.h · Cross-compiler

Overload 2: TMtx *EigSymRange(TVec *D, int LowRange, int HighRange, double Tolerance = 0) const;

Computes eigenvalues of a symmetric (Hermitian) matrix between min and max Index.

#NameTypeDescription
1DTVec *
2LowRangeint
3HighRangeint
4Tolerance = 0double
Remarks:

The computation is based on Relatively Robust Representations.

Tolerance parameter specifies the absolute error tolerance for the eigenvalues. An approximate eigenvalue is accepted as converged when it is determined to lie in an interval [a,b] of width less than or equal to

Tolerance + EPS / max( |a|,|b| ) ,

where EPS is the machine precision. If Tolerance is less than or equal to zero, then EPS*|T| will be used in its place, where |T| is the 1-norm of the tridiagonal matrix obtained by reducing A to tridiagonal form.

Eigenvalues will be computed most accurately when Tolerance is set to twice the underflow threshold, not zero. If this routine returns fails , indicating that some eigenvectors did not converge, try setting Tolerance to UnderflowThreshold.

Declared in Dew::Math::Matrix · Dew.Math/MtxExpr.h · Cross-compiler