Deep Learning-based Luenberger observer design for discrete-time nonlinear systems

Author:

Peralez Johan,Nadri Madiha

Publisher

IEEE

Reference16 articles.

1. Data-driven multi-model control for a waste heat recovery system

2. Deep learning for universal linear embeddings of nonlinear dynamics;bethany lusch;Nature Communications,2018

3. Universal approximation of an unknown mapping and its derivatives using multilayer feedforward networks

4. The Expressive Power of Neural Networks: A View from the Width;lu;NeurIPS,2017

5. Numerical design of Luenberger observers for nonlinear systems

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