Fernando Moreu
Orcid: 0000-0002-7105-7843
According to our database1,
Fernando Moreu
authored at least 22 papers
between 2018 and 2024.
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Collaborative distances:
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Bibliography
2024
Sensors, August, 2024
Sensors, June, 2024
Methodology to Deploy CNN-Based Computer Vision Models on Immersive Wearable Devices.
CoRR, 2024
Immersive Robot Programming Interface for Human-Guided Automation and Randomized Path Planning.
CoRR, 2024
2023
Augmented reality-computer vision combination for automatic fatigue crack detection and localization.
Comput. Ind., August, 2023
Sensors, 2023
Low-cost Efficient Wireless Intelligent Sensor (LEWIS) for Engineering, Research, and Education.
CoRR, 2023
Methodology to integrate augmented reality and pattern recognition for crack detection.
Comput. Aided Civ. Infrastructure Eng., 2023
2022
Use of Remote Structural Tap Testing Devices Deployed via Ground Vehicle for Health Monitoring of Transportation Infrastructure.
Sensors, 2022
2021
CoRR, 2021
Measuring Total Transverse Reference-free Displacements of Railroad Bridges using 2 Degrees of Freedom (2DOF): Experimental Validation.
CoRR, 2021
Visualization of Real-time Displacement Time History superimposed with Dynamic Experiments using Wireless Smart Sensors (WSS) and Augmented Reality (AR).
CoRR, 2021
State of the Art of Augmented Reality (AR) Capabilities for Civil Infrastructure Applications.
CoRR, 2021
Crack detection using tap-testing and machine learning techniques to prevent potential rockfall incidents.
CoRR, 2021
Reducing Gaze Distraction for Real-time Vibration Monitoring Using Augmented Reality.
CoRR, 2021
A methodology for measuring the total displacements of structures using a laser-camera system.
Comput. Aided Civ. Infrastructure Eng., 2021
2020
Measuring Transverse Displacements Using Unmanned Aerial Systems Laser Doppler Vibrometer (UAS-LDV): Development and Field Validation.
Sensors, 2020
Robotics, 2020
Quantifying Information without Entropy: Identifying Intermittent Disturbances in Dynamical Systems.
Entropy, 2020
2019
Measuring Reference-Free Total Displacements of Piles and Columns Using Low-Cost, Battery-Powered, Efficient Wireless Intelligent Sensors (LEWIS2).
Sensors, 2019
2018
Int. J. Intell. Robotics Appl., 2018