Parameter identification for Wiener‐ finite impulse response system with output data of missing completely at random mechanism and time delay

Author:

Jin Qibing1,Wang Zeyu1ORCID,Cai Wu1,Zhang Yuming1

Affiliation:

1. Institute of Automation Beijing University of Chemical Technology Beijing People's Republic of China

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Electrical and Electronic Engineering,Signal Processing,Control and Systems Engineering

Reference54 articles.

1. ArmaouYFA.Nonlinear model predictive control using a bilinear Carleman linearization‐based formulation for chemical processes. Paper presented at: Presented at the American Control Conference (ACC); 2015; Chicago IL.

2. Investigation on the Nonlinear Control System of High-Pressure Common Rail (HPCR) System in a Diesel Engine

3. Nonlinear system identification of fractional Wiener models;Sersour L;Nonlinear Dyn,2018

4. A new kernel‐based approach for overparameterized Hammerstein system identification," presented at the IEEE 54th Annual Conference on Decision and Control (CDC), Japan;Risuleo RS;Statistic,2015

5. Nonlinear system identification for predictive control using continuous time recurrent neural networks and automatic differentiation

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