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Bibliographic Details
Main Authors: Anantharaman, Ramachandran, Mauroy, Alexandre
Format: Preprint
Published: 2024
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Online Access:https://arxiv.org/abs/2404.07133
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author Anantharaman, Ramachandran
Mauroy, Alexandre
author_facet Anantharaman, Ramachandran
Mauroy, Alexandre
contents Dynamic Mode Decomposition (DMD) and its extensions (EDMD) have been at the forefront of data-based approaches to Koopman operators. Most (E)DMD algorithms assume that the entire state is sampled at a uniform sampling rate. In this paper, we provide an algorithm where the entire state is not uniformly sampled, with individual components of the states measured at individual (but known) sampling rates. We propose a two-step DMD algorithm where the first step performs Hankel DMD on individual state components to estimate them at specified time instants. With the entire state reconstructed at the same time instants, we compute the (E)DMD for the system with the estimated data in the second step.
format Preprint
id arxiv_https___arxiv_org_abs_2404_07133
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Dynamic Mode Decomposition with Non-uniform Sampling
Anantharaman, Ramachandran
Mauroy, Alexandre
Systems and Control
Dynamic Mode Decomposition (DMD) and its extensions (EDMD) have been at the forefront of data-based approaches to Koopman operators. Most (E)DMD algorithms assume that the entire state is sampled at a uniform sampling rate. In this paper, we provide an algorithm where the entire state is not uniformly sampled, with individual components of the states measured at individual (but known) sampling rates. We propose a two-step DMD algorithm where the first step performs Hankel DMD on individual state components to estimate them at specified time instants. With the entire state reconstructed at the same time instants, we compute the (E)DMD for the system with the estimated data in the second step.
title Dynamic Mode Decomposition with Non-uniform Sampling
topic Systems and Control
url https://arxiv.org/abs/2404.07133