English

Rosenbrock's Theorem on System Matrices over Elementary Divisor Domains

Rings and Algebras 2024-06-27 v1

Abstract

Rosenbrock's theorem on polynomial system matrices is a classical result in linear systems theory that relates the Smith-McMillan form of a rational matrix GG with the Smith forms of an irreducible polynomial system matrix PP giving rise to GG and of a submatrix of PP. This theorem has been essential in the development of algorithms for computing the poles and zeros of a rational matrix via linearizations and generalized eigenvalue algorithms. In this paper, we extend Rosenbrock's theorem to system matrices PP with entries in an arbitrary elementary divisor domain R\mathfrak R and matrices GG with entries in the field of fractions of R\mathfrak R. These are the most general rings where the involved Smith-McMillan and Smith forms both exist and, so, where the problem makes sense. Moreover, we analyze in detail what happens when the system matrix is not irreducible. Finally, we explore how Rosenbrock's theorem can be extended when the system matrix PP itself has entries in the field of fractions of the elementary divisor domain.

Keywords

Cite

@article{arxiv.2406.18218,
  title  = {Rosenbrock's Theorem on System Matrices over Elementary Divisor Domains},
  author = {Froilán Dopico and Vanni Noferini and Ion Zaballa},
  journal= {arXiv preprint arXiv:2406.18218},
  year   = {2024}
}
R2 v1 2026-06-28T17:19:43.149Z