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Noise measurements as proxies for traffic parameters in monitoring networks

机译:噪声测量作为监视网络中流量参数的代理

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The present research describes how microphones could be used as proxies for traffic parameter measurements for the estimation of airborne pollutant emissions. We consider two distinct measurement campaigns of 7 and 12 days, at two different locations along the urban ring road in Antwerp, Belgium, where sound pressure levels and traffic parameters were measured simultaneously. Noise indicators are calculated and used to construct models to estimate traffic parameters. It is found that relying on different statistical levels and selecting specific sound frequencies permits an accurate estimation of traffic intensities and mean vehicle speeds, both for light and heavy vehicles. Estimations of R~2 values ranging between 0.81 and 0.92 are obtained, depending on the location and traffic parameters. Furthermore, the usefulness of these estimated traffic parameters in a monitoring strategy is assessed. Carbon monoxide, hydrocarbon and nitrogen oxide emissions are calculated with the airborne pollutant emission model Artemis. The Artemis outputs fed with directly measured and estimated traffic parameters (based on noise measurements) are very similar. Finally, a method is proposed to enable using a model calibrated at one location at another location without the need for new calibration, making it straightforward to include new measurement locations in a monitoring network.
机译:本研究描述了如何将麦克风用作交通参数测量的代理,以估算空气中的污染物排放。我们考虑在比利时安特卫普的城市环路沿线的两个不同位置进行两个不同的7天和12天的测量活动,同时测量声压级和交通参数。计算噪声指标并用于构建模型以估算交通参数。已经发现,依靠不同的统计水平并选择特定的声音频率可以对轻型和重型车辆的交通强度和平均车速进行准确估计。根据位置和交通参数,可以得出R〜2值在0.81至0.92之间的估计值。此外,评估了这些估计的交通参数在监视策略中的有用性。使用空气污染物排放模型Artemis计算一氧化碳,碳氢化合物和氮氧化物的排放量。直接测量和估计交通参数(基于噪声测量)的Artemis输出非常相似。最终,提出了一种方法,该方法使得能够使用在另一位置处一个位置处校准的模型而无需进行新的校准,从而使得将新的测量位置直接包括在监视网络中变得容易。

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