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Physically-based auralization of railway rolling noise

机译:基于物理的铁路滚动噪声的特征化

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Railway noise contributes significantly to noise pollution both outside and within cities. In recent years, prediction models have been developed to study exposure levels and evaluate abatement solutions. Going one step further, auralization may provide an effective mean for evaluating perceptually the impact of railway noise on the soundscape near existing or future infrastructures. This paper extends railway noise emission models to propose an auralization approach based on physical parameters. As a first step, the approach focuses on rolling noise radiated by the track and wheels, which represents the main noise source over a wide range of speed. The excitation of the wheel/rail system by surface roughness is modeled in the time domain based on the system mobilities. Next, rail emission is modeled as a set of discrete coherent monopoles, while the wheel contribution uses resonant filters based on its structural response. Finally, the contribution of track sleepers is included following the standard TWINS model. Validations of the approach compare auralized pass-by levels with measured data. Preliminary results from listening tests evaluating the realism of auralized pass-by noise samples are also presented.
机译:铁路噪声在城市外部和城市内部噪音污染有显着贡献。近年来,已经开发出预测模型来研究曝光率和评估减少解决方案。进一步前一步,Auralization可以提供有效的平均值,用于评估远程噪声对现有或未来基础设施附近的声景的影响。本文扩展了铁路噪声发射模型,提出了一种基于物理参数的特征化方法。作为第一步,该方法侧重于轨道和轮子辐射的滚动噪声,其代表在宽范围内的主要噪声源。基于系统迁移率的时域,通过表面粗糙度的励磁通过表面粗糙度建模。接下来,轨道发射被建模为一组离散的相干垄断,而车轮贡献使用基于其结构响应的谐振滤波器。最后,轨道睡眠者的贡献包括在标准的双胞胎模型之后。方法的验证将具有测量数据的Auralized通过级别进行比较。还提出了评估特征化通过噪声样本的现实主义的听测测试的初步结果。

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