Remote Sensing-Based Structural Health Monitoring and Damage Assessment
1. Introduction
2. Topics/Contributions
- Deng, J.; Dai, K.; Liang, R.; Chen, L.; Wen, N.; Zheng, G.; Xu, H. Interferometric Synthetic Aperture Radar Applicability Analysis for Potential Landslide Identification in Steep Mountainous Areas with C/L Band Data. Remote Sens. 2023, 15, 4538. https://doi.org/10.3390/rs15184538.
- Han, Y.; Li, T.; Dai, K.; Lu, Z.; Yuan, X.; Shi, X.; Liu, C.; Wen, N.; Zhang, X. Revealing the Land Subsidence Deceleration in Beijing (China) by Gaofen-3 Time Series Interferometry. Remote Sens. 2023, 15, 3665. https://doi.org/10.3390/rs15143665.
- Zhang, G.; Wang, Z.; Sang, W.; Zhou, B.; Wang, Z.; Yao, G.; Bi, J. Research on Dynamic Deformation Laws of Super High-Rise Buildings and Visualization Based on GB-RAR and LiDAR Technology. Remote Sens. 2023, 15, 3651. https://doi.org/10.3390/rs15143651.
- Gao, H.; Xiong, L.; Chen, J.; Lin, H.; Feng, G. Surface Subsidence of Nanchang, China 2015–2021 Retrieved via Multi-Temporal InSAR Based on Long- and Short-Time Baseline Net. Remote Sens. 2023, 15, 3253. https://doi.org/10.3390/rs15133253.
- Torres-Gonzáles, M.; Valença, J.; Santos, B.O.; Silva, A.; Mendes, M.P. StainView: A Fast and Reliable Method for Mapping Stains in Facades Using Image Classification in HSV and CIELab Colour Space. Remote Sens. 2023, 15, 2895. https://doi.org/10.3390/rs15112895.
- Wu, J.; Shi, Y.; Wang, H.; Wen, Y.; Du, Y. Surface Defect Detection of Nanjing City Wall Based on UAV Oblique Photogrammetry and TLS. Remote Sens. 2023, 15, 2089. https://doi.org/10.3390/rs15082089.
- Yuan, H.; Wu, Y.; Zhang, Y.; Shi, X.; Bian, S. Isostatic Anomaly and Isostatic Additional Force Analysis by Multiple Geodetic Observations in Qinling Area. Remote Sens. 2023, 15, 740. https://doi.org/10.3390/rs15030740.
- Liu, C.; Li, C.; Yang, J.; Hu, L. Sea-Crossing Bridge Detection in Polarimetric SAR Images Based on Windowed Level Set Segmentation and Polarization Parameter Discrimination. Remote Sens. 2022, 14, 5856. https://doi.org/10.3390/rs14225856.
- Su, Y.; Yang, H.; Peng, J.; Liu, Y.; Zhao, B.; Shi, M. A Novel Near-Real-Time GB-InSAR Slope Deformation Monitoring Method. Remote Sens. 2022, 14, 5585. https://doi.org/10.3390/rs14215585.
- Zhu, Y.; Tang, H. Automatic Damage Detection and Diagnosis for Hydraulic Structures Using Drones and Artificial Intelligence Techniques. Remote Sens. 2023, 15, 615. https://doi.org/10.3390/rs15030615.
3. Summary
4. Further Reading
Conflicts of Interest
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© 2024 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Share and Cite
Valença, J.; Qin, X.; Chang, L.; Dong, J.; Shi, X.; Casas, J.R. Remote Sensing-Based Structural Health Monitoring and Damage Assessment. Remote Sens. 2024, 16, 1146. https://doi.org/10.3390/rs16071146
Valença J, Qin X, Chang L, Dong J, Shi X, Casas JR. Remote Sensing-Based Structural Health Monitoring and Damage Assessment. Remote Sensing. 2024; 16(7):1146. https://doi.org/10.3390/rs16071146
Chicago/Turabian StyleValença, Jónatas, Xiaoqiong Qin, Ling Chang, Jie Dong, Xuguo Shi, and Joan R. Casas. 2024. "Remote Sensing-Based Structural Health Monitoring and Damage Assessment" Remote Sensing 16, no. 7: 1146. https://doi.org/10.3390/rs16071146
APA StyleValença, J., Qin, X., Chang, L., Dong, J., Shi, X., & Casas, J. R. (2024). Remote Sensing-Based Structural Health Monitoring and Damage Assessment. Remote Sensing, 16(7), 1146. https://doi.org/10.3390/rs16071146