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A monocular vision and inclinometer combined system for 6DOF measurement of double shield TBM

机译:单眼视觉和测斜仪组合系统,用于双自由度TBM的6自由度测量

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摘要

In order to detect the 6-DOF motions between the two shields of double shield tunnel boring machine (TBM) during excavating process, this paper presents a 6-DOF measurement system combining monocular vision and inclinometer sensors. This technique extends the traditional monocular vision method by adding two inclinometer sensors on the camera and the feature point target of the monocular vision system respectively. Combined measurement model of the system is established and a weighted optimization solution is presented with linear estimation as iterative initial value. A calibration method for the rotation between the inclinometer and the feature point target is elaborated. Through Monte Carlo simulations and comparison experiments of spatial coordinate measurement with total station, the feasibility of the measurement model is validated and the measurement accuracy of the system is evaluated. Compared with the pure monocular vision method, the proposed method greatly improves the measurement accuracy. (C) 2016 Elsevier B.V. All rights reserved.
机译:为了检测双盾隧道掘进机(TBM)在开挖过程中两个盾构之间的6-DOF运动,本文提出了一种结合了单眼视觉和测斜仪传感器的6-DOF测量系统。该技术通过在相机和单眼视觉系统的特征点目标上分别添加两个测斜仪传感器,扩展了传统的单眼视觉方法。建立了系统的组合测量模型,并提出了以线性估计为迭代初始值的加权优化解。阐述了测斜仪与特征点目标之间旋转的校准方法。通过蒙特卡罗模拟和全站仪空间坐标测量的对比实验,验证了测量模型的可行性,并评价了系统的测量精度。与纯单眼视觉方法相比,该方法大大提高了测量精度。 (C)2016 Elsevier B.V.保留所有权利。

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