AbstractGiven a controllable linear control system defined by a pair of constant matrices (A,B), the set of controllability subspaces is a stratified submanifold of the set of (A,B)-invariant subspaces. We parametrize each strata by means of coordinate charts. This parametrization has significant differences to that of (A,B)-invariant subspaces, showing a more complex geometric structure
Cover relations for orbits and bundles of controllability and observability pairs as-sociated with l...
A general setting is developed which describes controlled invariance and conditioned invariance for ...
A general setting is developed which describes controlled invariance and conditioned invariance for ...
AbstractGiven a controllable linear control system defined by a pair of constant matrices (A,B), the...
AbstractGiven a controllable system defined by a pair of matrices (A,B), we investigate the geometry...
Given a controllable linear control system defined by a pair of constant matrices (A,B), the set of ...
Given a controllable linear control system defined by a pair of constant matrices (A;B), the set of...
AbstractLet (A,B)∈Cn×n×Cn×m and M be an (A,B)-invariant subspace. Let C(A,B) be the controllability ...
AbstractThe linear equation Ax=b, with A n×n, is considered, and it is shown that the controllable s...
AbstractLet (A,B)∈Cn×n×Cn×m and M be an (A,B)-invariant subspace. Let C(A,B) be the controllability ...
AbstractA new methodology is proposed for the characterization of the controllability indices of lin...
Introduction The geometric approach to linear system theory has proved very succesful in solving a v...
Introduction In the present paper a review is given of the important system theoretic concept of (A...
AbstractLet (A,B)∈Cn×n×Cn×m and M be an (A,B)-invariant subspace. In this paper the following result...
AbstractLet (A,B)∈Cn×n×Cn×m and let M be an (A,B)-invariant subspace. In this paper the following re...
Cover relations for orbits and bundles of controllability and observability pairs as-sociated with l...
A general setting is developed which describes controlled invariance and conditioned invariance for ...
A general setting is developed which describes controlled invariance and conditioned invariance for ...
AbstractGiven a controllable linear control system defined by a pair of constant matrices (A,B), the...
AbstractGiven a controllable system defined by a pair of matrices (A,B), we investigate the geometry...
Given a controllable linear control system defined by a pair of constant matrices (A,B), the set of ...
Given a controllable linear control system defined by a pair of constant matrices (A;B), the set of...
AbstractLet (A,B)∈Cn×n×Cn×m and M be an (A,B)-invariant subspace. Let C(A,B) be the controllability ...
AbstractThe linear equation Ax=b, with A n×n, is considered, and it is shown that the controllable s...
AbstractLet (A,B)∈Cn×n×Cn×m and M be an (A,B)-invariant subspace. Let C(A,B) be the controllability ...
AbstractA new methodology is proposed for the characterization of the controllability indices of lin...
Introduction The geometric approach to linear system theory has proved very succesful in solving a v...
Introduction In the present paper a review is given of the important system theoretic concept of (A...
AbstractLet (A,B)∈Cn×n×Cn×m and M be an (A,B)-invariant subspace. In this paper the following result...
AbstractLet (A,B)∈Cn×n×Cn×m and let M be an (A,B)-invariant subspace. In this paper the following re...
Cover relations for orbits and bundles of controllability and observability pairs as-sociated with l...
A general setting is developed which describes controlled invariance and conditioned invariance for ...
A general setting is developed which describes controlled invariance and conditioned invariance for ...