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基于谢伊姆普flug相机的桥梁多点位移监测技术

Scheimpflug Camera-Based Technique for Multi-Point Displacement Monitoring of Bridges.

作者信息

Xing Lei, Dai Wujiao, Zhang Yunsheng

机构信息

School of Geosciences and Info-Physics, Central South University, Changsha 410083, China.

出版信息

Sensors (Basel). 2022 May 27;22(11):4093. doi: 10.3390/s22114093.

Abstract

Owing to the limited field of view (FOV) and depth of field (DOF) of a conventional camera, it is quite difficult to employ a single conventional camera to simultaneously measure high-precision displacements at many points on a bridge of dozens or hundreds of meters. Researchers have attempted to obtain a large FOV and wide DOF by a multi-camera system; however, with the growth of the camera number, the cost, complexity and instability of multi-camera systems will increase exponentially. This study proposes a multi-point displacement measurement method for bridges based on a low-cost Scheimpflug camera. The Scheimpflug camera, which meets the Scheimpflug condition, can enlarge the depth of field of the camera without reducing the lens aperture and magnification; thus, when the measurement points are aligned in the depth direction, all points can be clearly observed in a single field of view with a high-power zoom lens. To reduce the impact of camera motions, a motion compensation method applied to the Scheimpflug camera is proposed according to the characteristic that the image plane is not perpendicular to the lens axis in the Scheimpflug camera. Several tests were conducted for performance verification under diverse settings. The results showed that the motion errors in and directions were reduced by at least 62% and 92%, respectively, using the proposed method, and the measurements of the camera were highly consistent with LiDAR-based measurements.

摘要

由于传统相机的视场(FOV)和景深(DOF)有限,使用单个传统相机同时测量数十米或数百米桥梁上多个点的高精度位移非常困难。研究人员试图通过多相机系统获得大视场和宽景深;然而,随着相机数量的增加,多相机系统的成本、复杂性和不稳定性将呈指数级增长。本研究提出了一种基于低成本施密特校正相机的桥梁多点位移测量方法。满足施密特校正条件的施密特校正相机可以在不减小镜头光圈和放大倍率的情况下扩大相机的景深;因此,当测量点在深度方向上对齐时,使用高倍变焦镜头可以在单个视场中清晰地观察到所有点。为了减少相机运动的影响,根据施密特校正相机中像平面不垂直于镜头轴线的特性,提出了一种应用于施密特校正相机的运动补偿方法。在不同设置下进行了多次性能验证测试。结果表明,使用所提出的方法,x和y方向的运动误差分别至少降低了62%和92%,并且相机的测量结果与基于激光雷达的测量结果高度一致。

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