TY - JOUR
T1 - Drift error compensation for vision-based bridge deflection monitoring
AU - Long, Tian
AU - Xiaohong, Zhang
AU - Bing, Pan
N1 - Publisher Copyright:
© 2019 Techno-Press, Ltd. http:/www.techno-press.com/journals/sss&subpage=7
PY - 2019/11
Y1 - 2019/11
N2 - Recently, an advanced video deflectometer based on the principle of off-axis digital image correlation was presented and advocated for remote and real-time deflection monitoring of large engineering structures. In engineering practice, measurement accuracy is one of the most important technical indicators of the video deflectometer. However, it has been observed in many outdoor experiments that data drift often presents in the measured deflection-time curves, which is caused by the instability of imaging system and the unavoidable influences of ambient interferences (e.g., ambient light changes, ambient temperature variations as well as ambient vibrations) in non-laboratory conditions. The non-ideal unstable imaging conditions seriously deteriorate the measurement accuracy of the video deflectometer. In this work, to perform high-accuracy deflection monitoring, potential sources for the drift error are analyzed, and a drift error model is established by considering these error sources. Based on this model, a simple, easy-to-implement yet effective reference point compensation method is proposed for real-time removal of the drift error in measured deflections. The practicality and effectiveness of the proposed method are demonstrated by in-situ deflection monitoring of railway and highway bridges.
AB - Recently, an advanced video deflectometer based on the principle of off-axis digital image correlation was presented and advocated for remote and real-time deflection monitoring of large engineering structures. In engineering practice, measurement accuracy is one of the most important technical indicators of the video deflectometer. However, it has been observed in many outdoor experiments that data drift often presents in the measured deflection-time curves, which is caused by the instability of imaging system and the unavoidable influences of ambient interferences (e.g., ambient light changes, ambient temperature variations as well as ambient vibrations) in non-laboratory conditions. The non-ideal unstable imaging conditions seriously deteriorate the measurement accuracy of the video deflectometer. In this work, to perform high-accuracy deflection monitoring, potential sources for the drift error are analyzed, and a drift error model is established by considering these error sources. Based on this model, a simple, easy-to-implement yet effective reference point compensation method is proposed for real-time removal of the drift error in measured deflections. The practicality and effectiveness of the proposed method are demonstrated by in-situ deflection monitoring of railway and highway bridges.
KW - Off-axis digital image correlation
KW - Reference point compensation method
KW - Video deflectometer
UR - https://www.scopus.com/pages/publications/85090564453
U2 - 10.12989/sss.2019.24.5.649
DO - 10.12989/sss.2019.24.5.649
M3 - 文章
AN - SCOPUS:85090564453
SN - 1738-1584
VL - 24
SP - 649
EP - 657
JO - Smart Structures and Systems
JF - Smart Structures and Systems
IS - 5
ER -