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Extracting Information from Axle-Box Acceleration: On the Derivation of Rail Roughness Spectra in the Presence of Wheel Roughness

机译:从轴箱加速度提取信息:在车轮粗糙度存在下轨道粗糙度光谱的推导

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Railhead roughness increases over time, leading to increased environmental noise and vibration. The use of axle-box acceleration (ABA) measurements on in-service railway vehicles to monitor rail roughness is potentially more cost-effective than other techniques. The measured acceleration requires signal processing to derive suitable metrics of railhead condition. A transfer function may be calibrated with direct roughness and ABA measurements made on a reference track, which may then be used to derive roughness spectra from subsequent ABA measurements. However, this approach is affected by variations in track dynamic behaviour, as well as variations in wheel roughness, which is inherently combined with rail roughness in the ABA measurement. This paper proposes an improved approach that (i) extracts the track's dynamic stiffness parameters from the ABA measurements, enabling the derivation of the roughness-ABA transfer function for each section of track, and (ii) separates the wheel and rail roughness by synchronous averaging over several wheel revolutions. By accounting for variations in track properties and removing the influence of wheel roughness, initial modelling indicates that reliable measurements of rail roughness spectra can be obtained in practice.
机译:轨道粗糙度随着时间的推移而增加,导致环境噪音和振动增加。使用轴箱加速度(ABA)测量在运送轨道车辆中监控轨道粗糙度可能比其他技术更具成本效益。测量的加速需要信号处理以导出适当的轨道状况度量。可以用直接粗糙度和在参考轨道上进行的直接粗糙度和ABA测量来校准传递函数,然后可以使用从随后的ABA测量中导出粗糙度。然而,这种方法受轨道动态行为的变化的影响,以及车轮粗糙度的变化,其在ABA测量中固有地与轨道粗糙度相结合。本文提出了一种改进的方法,(i)从ABA测量中提取轨道的动态刚度参数,从而实现了轨道各部分的粗糙度-BA传递函数的推导,并且(ii)通过同步平均分离车轮和轨道粗糙度超过几轮革命。通过算用于轨道性质的变化并去除车轮粗糙度的影响,初始建模表明可以在实践中获得轨道粗糙度光谱的可靠测量。

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