Baqersad / Di Maio | Rotating Machinery, Optical Methods & Scanning LDV Methods, Volume 6 | Buch | 978-3-031-04097-9 | sack.de

Buch, Englisch, 185 Seiten, Format (B × H): 215 mm x 285 mm, Gewicht: 745 g

Reihe: Conference Proceedings of the Society for Experimental Mechanics Series

Baqersad / Di Maio

Rotating Machinery, Optical Methods & Scanning LDV Methods, Volume 6

Proceedings of the 40th IMAC, A Conference and Exposition on Structural Dynamics 2022

Buch, Englisch, 185 Seiten, Format (B × H): 215 mm x 285 mm, Gewicht: 745 g

Reihe: Conference Proceedings of the Society for Experimental Mechanics Series

ISBN: 978-3-031-04097-9
Verlag: Springer International Publishing


Rotating Machinery, Optical Methods & Scanning LDV Methods, Volume 6: Proceedings of the 40th IMAC, A Conference and Exposition on Structural Dynamics, 2022, the sixth volume of nine from the Conference brings together contributions to this important area of research and engineering. The collection presents early findings and case studies on fundamental and applied aspects of Structural Health Monitoring, including papers on:

- Novel Techniques
- Optical Methods,
- Scanning LDV Methods
- Photogrammetry & DIC
- Rotating Machinery
Baqersad / Di Maio Rotating Machinery, Optical Methods & Scanning LDV Methods, Volume 6 jetzt bestellen!

Zielgruppe


Research

Weitere Infos & Material


Chapter 1. Introduction to Multipath Doppler Vibrometry (MDV) for Validating Complex Models Accurately and Without Contact.- Chapter 2. DIC Using Low Speed Cameras on a Scaled Wind Turbine Blade.- Chapter 3. Data Challenges for Structural Health Monitoring of Electrical Machines.- Chapter 4. Neuromorphic Data Processing for Event-Driven Imagery for Acoustic Measurements.- Chapter 5. Template Matching and Particle Filtering for Structural Identification of High and Low Frequency Vibration.- Chapter 6. Multi-Sensor Collaborative Sampling Schemes to Reconstruct Undersampled Mechanical System Signals for Machinery Fault Detection.- Chapter 7. Regime Sorting for Multiscale Vibrations and Phase-Based Motion Extraction.- Chapter 8. Digital Image Correlation with a Neuromorphic Event-based Imager.- Chapter 9. Monitoring the Response of Electrical Components during Environmental Vibration Tests Using a Scanning Laser Doppler Vibrometer.- Chapter 10. Advanced Mesh Reconstruction with Low BudgetRGBD-Hardware for Modal Analysis with the Software WaveImage.- Chapter 11. Stereoscopic High Speed Camera Based Operational Modal Analysis using a One-camera Setup.- Chapter 12. In-plane Vibration Measurement of an Aluminum Plate Using a Three-dimensional Continuously Scanning Laser Doppler Vibrometer System.- Chapter 13. Measuring Full-Field Deformation in Ultra-High-Performance Concrete Structural Components using Tag-Based Robotic Vision.- Chapter 14. Dynamic Behaviour and Magneto-Mechanical Efficiency of a Contactless Magnetic Transmission.- Chapter 15. Structural Damage Identification for Plate-Like Structures Using Two-dimensional Teager Energy Operator-Wavelet Transform.- Chapter 16. A Vision-based Quantification Approach for Reinforced Concrete Tunnel Liner Delamination.- Chapter 17. An Optical Temporal and Spatial Vibration-Based Damage Detection Using Convolutional Neural Networks and Long Short-Term Memory.- Chapter 18. A Hybrid-Attention-LSTM-Based Deep Convolutional NeuralNetwork to Extract Modal Frequencies from Limited Dataset Using Transfer Learning.- Chapter 19. Detecting and Reconstructing the 3D Geometry of Subsurface Structural Damage Using Full-Field Image-Based Sensing and Topology Optimization.- Chapter 20. Optimal Kernel Design for the Extraction of Subtle Motions Using Convolutional Neural Network.


Dario Di Maio, University of Twente, Netherlands; Javad Baqersad, Kettering University, MI, USA.


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