Abstract
In this paper, we present an algorithm for identifying two-dimensional (2D) causal, recursive and separable-in-denominator (CRSD) state-space models in the Roesser form with deterministic–stochastic inputs. The algorithm implements the N4SID, PO-MOESP and CCA methods, which are well known in the literature on 1D system identification, but here we do so for the 2D CRSD Roesser model. The algorithm solves the 2D system identification problem by maintaining the constraint structure imposed by the problem (i.e. Toeplitz and Hankel) and computes the horizontal and vertical system orders, system parameter matrices and covariance matrices of a 2D CRSD Roesser model. From a computational point of view, the algorithm has been presented in a unified framework, where the user can select which of the three methods to use. Furthermore, the identification task is divided into three main parts: (1) computing the deterministic horizontal model parameters, (2) computing the deterministic vertical model parameters and (3) computing the stochastic components. Specific attention has been paid to the computation of a stabilised Kalman gain matrix and a positive real solution when required. The efficiency and robustness of the unified algorithm have been demonstrated via a thorough simulation example.
| Original language | American English |
|---|---|
| Pages (from-to) | 2584-2610 |
| Number of pages | 27 |
| Journal | International Journal of Control |
| Volume | 89 |
| Issue number | 12 |
| DOIs | |
| State | Published - Jul 28 2016 |
Bibliographical note
Publisher Copyright:© 2016 Informa UK Limited, trading as Taylor & Francis Group.
ASJC Scopus Subject Areas
- Control and Systems Engineering
- Computer Science Applications
Keywords
- 2D separable-in-denominator Roesser model
- 2D subspace system identification
- CCA
- N4SID
- PO-MOESP
- deterministic–stochastic inputs
Disciplines
- Computer Sciences
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