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Study of Dynamic Geometrical Parameter Detection System for Tramcar Track Irregularity

机译:Tramcar跟踪不规则性动态几何参数检测系统的研究

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Despite the rapid development of the tramcar market, the study concerning security detection has been a later starter and mostly remains the human detection stage currently, resulting in low detection efficiency and precision. In this case, the paper suggests a detection system for the track irregularity of tramcars, realizing non-contact dynamic measurement over the geometric parameters for groove track longitudinal level and alignment irregularity. In light of this, it further proposes an irregularity detection algorithm for the geometric parameters of groove tracks based on the principle of laser distance measuring and the mid-chord offset (MCO) method, which overcomes the traditional asymmetrical chord offset method's defect of being only capable of checking the irregularity of short wavelengths within lm and avoids the damage of tracks due to contact track measuring instruments. Importantly, the high detection accuracy, favorable stability, and other favorable characteristics of the detection system proposed have been proven by experimental verification, thereby providing the detection of geometric parameters for modern tramcars with a new method and a new tool.
机译:尽管有轨电车市场的快速发展,关于安全检测的研究已经成为后期起动器,并且主要是目前人类检测阶段,导致检测效率低,精度低。在这种情况下,该文件表明了用于轨道不规则的检测系统,用于在沟槽轨道纵向水平的几何参数上实现非接触动态测量和对准不规则性。鉴于此,它还提出了一种基于激光距离测量和中弦偏移(MCO)方法的沟槽轨道的几何参数的不规则检测算法,其克服了传统的不对称弦偏移方法的缺陷能够检查LM内的短波长的不规则性,并避免由于接触轨道测量仪器而损坏轨道。重要的是,通过实验验证证明了所提出的高检测精度,有利的稳定性和其他有利的特性,从而通过新方法和新工具检测现代有轨电车的几何参数的检测。

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