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Rail Corrugation Broadband Measurement Based on Combination-Chord Model and LS

机译:基于组合 - 和弦模型和LS的轨道波纹宽带测量

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摘要

Rail corrugation dynamic measurement techniques are critical to guarantee transport security and guide rail maintenance. The chord-based method is one of the most common methods nowadays. However, for corrugation broadband measurement varied from 30 mm to 60 m, this method is faced with two severe challenges in actual applications: one is that the effective measuring range of traditional single chord models cannot cover the required broadband, and the other is that the common frequency sampling method (FSM) is unavailable to design the FIR inverse filters for asymmetrical chord and multipoints chord models. To solve the two problems, a practical combination-chord model (CCM) is proposed in this paper. For the first problem, the model is constructed on the existing three-point asymmetrical chord platform. Through the flexible combination of three sensors, CCM integrates the advantages of long-wave measurement from the two-point chord model and shortwave measurement from the three-point asymmetrical chord model, and realizes the corrugation broadband measurement in one platform successfully. For the second problem, the least square (LS) is employed to design the inverse filter. Compared with FSM, the design process is more unlimited and easier for the user. More important, even with the same output filter order, the filter performance designed by LS is better than that by FSM. The efficiency of CCM and the superiority of inverse filter designed by LS were verified by vast experiments. The results could achieve the design target.
机译:轨道波纹动态测量技术对于保证运输安全和导轨维护至关重要。基于和弦的方法是现在最常见的方法之一。然而,对于波纹宽带测量,从30 mm到60米的变化,这种方法面临两种严重的挑战,在实际应用中面临着两个严重的挑战:一个是传统单弦型号的有效测量范围不能覆盖所需的宽带,另一个是常见的频率采样方法(FSM)不可用来设计用于非对称和弦和多点和弦模型的FIR逆滤波器。为了解决这两个问题,本文提出了一种实用的组合 - 和弦模型(CCM)。对于第一个问题,该模型是在现有的三点不对称和平平台上构建的。通过三个传感器的柔性组合,CCM从两点弦模型和三点不对称和弦模型的短波测量集成了长波测量的优点,并在一个平台中成功实现了波纹宽带测量。对于第二问题,采用最小二乘(LS)来设计逆滤波器。与FSM相比,设计过程更无限,更容易用户。更重要的是,即使具有相同的输出滤波器顺序,LS设计的过滤器性能也比FSM更好。通过巨大的实验验证了CCM的效率和LS设计的逆滤波器的优越性。结果可以实现设计目标。

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