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Railway Tunnel Clearance Inspection Method Based on 3D Point Cloud from Mobile Laser Scanning

机译:基于3D点云的移动激光扫描铁路隧道净空检查方法

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摘要

Railway tunnel clearance is directly related to the safe operation of trains and upgrading of freight capacity. As more and more railway are put into operation and the operation is continuously becoming faster, the railway tunnel clearance inspection should be more precise and efficient. In view of the problems existing in traditional tunnel clearance inspection methods, such as low density, slow speed and a lot of manual operations, this paper proposes a tunnel clearance inspection approach based on 3D point clouds obtained by a mobile laser scanning system (MLS). First, a dynamic coordinate system for railway tunnel clearance inspection has been proposed. A rail line extraction algorithm based on 3D linear fitting is implemented from the segmented point cloud to establish a dynamic clearance coordinate system. Second, a method to seamlessly connect all rail segments based on the railway clearance restrictions, and a seamless rail alignment is formed sequentially from the middle tunnel section to both ends. Finally, based on the rail alignment and the track clearance coordinate system, different types of clearance frames are introduced for intrusion operation with the tunnel section to realize the tunnel clearance inspection. By taking the Shuanghekou Tunnel of the Chengdu–Kunming Railway as an example, when the clearance inspection is carried out by the method mentioned herein, its precision can reach 0.03 m, and difference types of clearances can be effectively calculated. This method has a wide application prospects.
机译:铁路隧道通关直接关系到火车的安全运行和货运能力的提高。随着越来越多的铁路投入运营,并且运行速度越来越快,铁路隧道净空检查应更加精确和高效。针对传统的隧道间隙检查方法存在的密度低,速度慢,人工操作多等问题,提出了一种基于移动激光扫描系统(MLS)获得的3D点云的隧道间隙检查方法。 。首先,提出了用于铁路隧道净空检查的动态坐标系。从分割的点云中实现了基于3D线性拟合的铁路线提取算法,建立了动态​​间隙坐标系。第二,一种基于铁路间隙限制无缝地连接所有轨道段的方法,并且从中间隧道部分到两端依次形成无缝轨道对准。最后,基于轨道对准和轨道间隙坐标系,引入不同类型的间隙框架,用于隧道段的侵入操作,以实现隧道间隙检查。以成昆铁路双河口隧道为例,采用本文所述方法进行间隙检查时,其精度可达到0.03m,可以有效计算出间隙的不同类型。该方法具有广阔的应用前景。

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