A novel physics-informed framework for real-time adaptive modal parameters estimation of offshore structures
Author:
Publisher
Elsevier BV
Subject
Ocean Engineering,Environmental Engineering
Reference43 articles.
1. Unsupervised real-time anomaly detection for streaming data;Ahmad;Neurocomputing,2017
2. A review of vibration based damage detection in civil structures: from traditional methods to machine learning and deep learning applications;Avci;Mech. Syst. Signal Process.,2021
3. Machine learning paradigm for structural health monitoring;Bao;Struct. Health Monit.,2020
4. Ambient vibration responses denoising for operational modal analysis of a jacket-type offshore platform;Bao;Ocean Eng.,2019
5. Sequence-based modeling of deep learning with LSTM and GRU networks for structural damage detection of floating offshore wind turbine blades;Choe;Renew. Energy,2021
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