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A robust line-tracking photogrammetry method for uplift measurements of railway catenary systems in noisy backgrounds

机译:嘈杂的背景中铁路关联系统升电测量的强大线路跟踪摄影测量方法

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For electrical railways, contact wires are used to ensure stable and continuous power supply to trains operating on the infrastructure. One crucial design parameter used to control the catenary design is the vertical displacement. The traditional uplift measuring equipment of catenary systems usually requires that targets are installed on the wire, and/or that measurement devices are mounted on the support structure of catenary systems or temporary poles. These methods require track access and substantial time and manpower for installation and measurement. Thus, a portable vision-based tracking system is proposed to enable remote, non-contact and non-target uplift measurements of catenary systems. The challenge in measuring the catenary displacement is to detect a linear rigid body in a noisy background environment with a high sampling frequency. To detect the displacement, a vision-based system with a novel line-tracking technique is used to achieve robust and accurate measurement. The proposed technique is based on a coarse subset and line search and subpixel detection. The line-tracking method is successfully employed for the identification of the important vertical displacements of a contact wire in front of a noisy background. The accuracy, robustness and applicability of the proposed tracking method are demonstrated through numerical experiments, the field uplift measurement of the railway catenary system and the identification of the contact wire in a diverse city environment.
机译:对于电气铁路,接触线用于确保在基础设施上运行的列车稳定和连续的电源。用于控制脉链设计的一个重要设计参数是垂直位移。传统的隆起系统的隆起测量设备通常要求将目标安装在线上,和/或将测量装置安装在延箍系统或临时杆的支撑结构上。这些方法需要跟踪和大量时间和人力用于安装和测量。因此,提出了一种基于视觉的基于视觉的跟踪系统,以实现关联系统的远程,非接触和非目标隆起测量。测量凸起位移时的挑战是在具有高采样频率的嘈杂背景环境中检测线性刚体。为了检测位移,使用具有新型线路跟踪技术的基于视觉系统来实现稳健和准确的测量。所提出的技术基于粗略子集和线路搜索和子像素检测。线路跟踪方法成功地用于识别嘈杂背景前面的接触线的重要垂直位移。通过数值实验证明了所提出的跟踪方法的准确性,鲁棒性和适用性,通过数值实验来证明了铁路延伸系统的现场隆起测量,以及在各种城市环境中的接触线的识别。

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