A fusion autoencoder model and piecewise anomaly index for aero-engine fault diagnosis
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Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s10489-024-05712-7.pdf
Reference28 articles.
1. Li S, Yu J, Wang H (2023) Damages detection of aeroengine blades via deep learning algorithms. IEEE Trans Instrum Meas 72:1–11
2. Wang Z, Luo Q, Chen H, Zhao J, Yao L, Zhang J, Chu F (2024) A high-accuracy intelligent fault diagnosis method for aero-engine bearings with limited samples. Comput Ind 159:104099
3. Zhao Z, Wu J, Li T, Sun C, Yan R, Chen X (2021) Challenges and opportunities of ai-enabled monitoring, diagnosis & prognosis: A review. Chin J Mech Eng 34:1–29
4. Fink O, Wang Q, Svens’en M, Dersin P, Lee W-J, Ducoffe M (2020) Potential, challenges and future directions for deep learning in prognostics and health management applications. Eng Appl Artif Intell 92:103678
5. Hanachi H, Mechefske CK, Liu J, Banerjee A, Chen Y (2018) Performance-based gas turbine health monitoring, diagnostics, and prognostics: A survey. IEEE Trans Reliab 67:1340–1363
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