Realization Theory for LPV State-Space Representations with Affine Dependence - CRISTAL-SYNER
Article Dans Une Revue IEEE Transactions on Automatic Control Année : 2016

Realization Theory for LPV State-Space Representations with Affine Dependence

Résumé

We present a Kalman-style realization theory for linear parameter-varying state-space representations whose matrices depend on the scheduling variables in an affine way (abbreviated as LPV-SSA). We show that minimality of LPV-SSAs is equivalent to observability and span-reachability rank conditions, and that minimal LPV-SSAs of the same input-output map are isomorphic. We present necessary and sufficient conditions for existence of an LPV-SSA in terms of the rank of a Hankel-matrix and a Ho-Kalman-like realization algorithm.
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Dates et versions

hal-01406805 , version 1 (23-12-2023)

Identifiants

Citer

Mihaly Petreczky, Roland Toth, Guillaume Mercère. Realization Theory for LPV State-Space Representations with Affine Dependence. IEEE Transactions on Automatic Control, 2016, 62 (9), pp.4667-4674. ⟨10.1109/TAC.2016.2629989⟩. ⟨hal-01406805v1⟩
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