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An Approach to Frequency Selectivity in an Urban Environment by Means of Multi-Path Acoustic Channel Analysis

机译:多径声通道分析的城市环境频率选择性方法

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摘要

The improvement of quality of life in the framework of the smart city paradigm cannot be limited to a set of objective measures carried out over several critical parameters (e.g., noise or air pollution). Noise disturbances depend not only on the equivalent level LAeq measured, but also on the spectral distribution of the sounds perceived by people. Propagation modelling to conduct auralization can be done either with geometrical acoustics or with wave-based methods, given the fact that urban environments are acoustically complex scenarios. In this work, we present a first analysis of the acoustic spectral distribution of street noise, based on the frequency selectivity of the urban outdoor channel and its corresponding coherence bandwidth. The analysis was conducted in the framework of the data collected in the Milan pilotWASN of the DYNAMAP LIFE project, with the use of three simulated acoustic impulse responses. The results show the clear influence of the evaluated coherence bandwidth of each of the simulated channels over real-life acoustic samples, which leads us to the conclusion that all raw acoustic samples have to be considered as wide-band. The results also depict a dependence of accumulated energy at the receiver with the coherence bandwidth of the channel. We conclude that, the higher the delay spread of the channel, the narrower the coherence bandwidth and the higher the distortion suffered by acoustic signals. Moreover, the accumulated energy of the received signal along the frequency axis tends to differ from the accumulated energy of the transmitted signal when facing narrow coherence bandwidth channels; whereas the accumulated energy along the time axis diverges from the accumulated transmitted energy when facing wide coherence bandwidth channels.
机译:智慧城市范式框架中生活质量的提高不能仅限于在几个关键参数(例如噪音或空气污染)上进行的一系列客观测量。噪声干扰不仅取决于测得的等效声级LAeq,而且取决于人们感知到的声音的频谱分布。考虑到城市环境在声学上是复杂的场景,可以使用几何声学或基于波的方法进行传播模型来进行听觉化。在这项工作中,我们基于城市室外通道的频率选择性及其相应的相干带宽,对街道噪声的声谱分布进行了首次分析。该分析是在DYNAMAP LIFE项目的Milan pilot WASN中收集的数据框架内进行的,其中使用了三个模拟的声脉冲响应。结果表明,每个模拟通道的评估相干带宽对真实声音样本的明显影响,这使我们得出以下结论:必须将所有原始声音样本视为宽带。结果还描绘了在接收机处积累的能量与信道相干带宽的依赖性。我们得出的结论是,信道的延迟扩展越高,相干带宽越窄,声信号遭受的失真也越大。此外,当面对狭窄的相干带宽信道时,沿着频率轴的接收信号的累积能量趋向于与发射信号的累积能量不同;当面对宽相干带宽信道时,沿时间轴的累积能量与累积的发射能量发散。

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