Refined instrumental variable method for hammerstein-wiener continuous-time model identification

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Abstract

This study presents the first attempt of direct continuous-time model identification using instrumental variable method for Hammerstein-Wiener systems from sampled data. Under the assumption of monotonic function for the Wiener part, the whole non-linear model is first estimated as an augmented multiple-input single-output linear model, from which the model parameters are then extracted by singular value decomposition. A refined instrumental variable method is proposed to consistently identify this non-linear system acting in a coloured noisy environment. Monte Carlo simulation analysis is presented to illustrate the effectiveness of the proposed method. © The Institution of Engineering and Technology 2013.

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Ni, B., Gilson, M., & Garnier, H. (2013). Refined instrumental variable method for hammerstein-wiener continuous-time model identification. IET Control Theory and Applications, 7(9), 1276–1286. https://doi.org/10.1049/iet-cta.2012.0548

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