参考
[1] The MATLAB® gallery of test matrices is based upon the work of Nicholas J. Higham at the
Department of Mathematics, University of Manchester, Manchester, England. Further background
can be found in the books MATLAB Guide, 2nd ed, by Desmond J. Higham and Nicholas J. Higham,
Philadelphia: SIAM, 2005, and Accuracy and Stability of Numerical
Algorithms, by Nicholas J. Higham, Philadelphia: SIAM, 1996.
[2] Graham, R.L. and N. J. A. Sloane.
“Anti-Hadamard Matrices.“ Linear Algebra and Its
Applications 62 (1984): 113-137.
[3] Lippold, G. “Todd, J.,
Basic Numerical Mathematics. Vol. 2: Numerical Algebra. ISNM 22. Basel-Stuttgart,
Birkhäuser-Verlag 1977. 216 S. DM 48,–.“ ZAMM - Zeitschrift für Angewandte
Mathematik und Mechanik 59, no. 10 (1979): 589–589.
[4] Gear, C. W. “A Simple Set
of Test Matrices for Eigenvalue Programs.“ Mathematics of
Computation 23, no. 105 (1969): 119-125.
[5] Lotkin, M. “A Set of Test
Matrices.“ Mathematical Tables and Other Aids to Computation 9,
no. 52 (1955): 153.
[6] Davies, P. I. and N. J. Higham.
“Numerically Stable Generation of Correlation Matrices and Their Factors.”
BIT Numerical Mathematics 40 (2000): 640-651.
[7] Barrett, W. W. and T. J. Jarvis.
“Spectral Properties of a Matrix of Redheffer.“ Linear Algebra and
Its Applications 162-164 (1992): 673-83.
[8] Roesler, F. “Riemann's
Hypothesis as an Eigenvalue Problem.“ Linear Algebra and Its
Applications 81 (1986): 153-98.
[9] Bondesson, L. and I. Traat.
“A Nonsymmetric Matrix with Integer Eigenvalues.“ Linear and
Multilinear Algebra 55, no. 3 (2007): 239-47.
[10] Rutishauser, H. “On Test
Matrices.“ Programmation en Mathematiques Numeriques, Editions
Centre Nat Recherche Sci, Paris, 165 (1966): 349-65.
[11] Wilkinson, J. H. The
Algebraic Eigenvalue Problem. Monographs on Numerical Analysis. Oxford: Oxford;
New York: Clarendon Press; Oxford University Press, 1988.
[12] Moler, C. B. Numerical
Computing with MATLAB. Philadelphia: Society for Industrial and Applied Mathematics,
2004.