Volume 27, Issue 2 e2473
RESEARCH ARTICLE

Image processing–based real-time displacement monitoring methods using smart devices

Ashish Shrestha

Corresponding Author

Ashish Shrestha

Department of Civil and Environmental Engineering, Saitama University, Saitama, Japan

Correspondence

Ashish Shrestha, Department of Civil and Environmental Engineering, Saitama University, Saitama, Japan.

Email: [email protected]

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Ji Dang

Ji Dang

Department of Civil and Environmental Engineering, Saitama University, Saitama, Japan

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Keisuke Nakajima

Keisuke Nakajima

Department of Civil and Environmental Engineering, Saitama University, Saitama, Japan

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Xin Wang

Xin Wang

Department of Architecture, Faculty of Science and Technology, Tokyo University of Science, Chiba, Japan

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First published: 18 November 2019
Citations: 24

Summary

Displacement measurement is one of the most important methods for structural health monitoring. However, because of high cost and heavy on-site installation, conducting displacement measurement using conventional sensors is not easy in practice. In this case, with improvements in image sensors in smart devices, it seems possible to measure displacement using image processing methods. In this study, smart device–based bridge displacement monitoring system was developed. Images captured by the image sensor are processed in real time to obtain the feature-responsive displacement. First, shaking table tests based on sine wave loading were conducted so that the reliable domain for frequency and amplitude measurement for different smart devices were identified by comparing with the reference-accurate displacement sensor. Then, on-site application and stability of the proposed system were demonstrated through 1-day field measurement on a real in-service bridge. Comparison of the displacement due to traffic and temperature using smart devices with accurate displacement sensor shows significant potential of the proposed approach.

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