On the similarity to nonnegative and Metzler Hessenberg forms
Author:
Affiliation:
1. University of California Berkeley , Department of Electrical Engineering and Computer Sciences , Berkeley , CA
2. Lund University , Department of Automatic Control , Lund , Sweden
Abstract
Publisher
Walter de Gruyter GmbH
Subject
Geometry and Topology,Algebra and Number Theory
Link
https://www.degruyter.com/document/doi/10.1515/spma-2020-0140/pdf
Reference10 articles.
1. [1] A. Berman and R. Plemmons. Nonnegative Matrices in the Mathematical Sciences. SIAM, 1994.
2. [2] J. E. Cohen and U. G. Rothblum. Nonnegative ranks, decompositions, and factorizations of nonnegative matrices. Linear Algebra and its Applications, 190:149–168, 1993.
3. [3] A. G. Cronin and T. J. Laffey. The diagonalizable nonnegative inverse eigenvalue problem. Special Matrices, 6(1):273–281, 2018.
4. [4] B. N. Datta. Numerical Methods for Linear Control Systems, volume 1. Academic Press, 2004.
5. [5] P. D. Egleston, T. D. Lenker, and S. K. Narayan. The nonnegative inverse eigenvalue problem. Linear Algebra and its Applications, 379:475–490, 2004. Special Issue on the Tenth ILAS Conference (Auburn, 2002).
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