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Practical Ranges of Loudness Levels of Various Types of Environmental Noise, Including Traffic Noise, Aircraft Noise, and Industrial Noise

机译:各种环境噪声(包括交通噪声,飞机噪声和工业噪声)的响度级别的实用范围

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摘要

In environmental noise control one commonly employs the A-weighted sound level as an approximate measure of the effect of noise on people. A measure that is more closely related to direct human perception of noise is the loudness level. At constant A-weighted sound level, the loudness level of a noise signal varies considerably with the shape of the frequency spectrum of the noise signal. In particular the bandwidth of the spectrum has a large effect on the loudness level, due to the effect of critical bands in the human hearing system. The low-frequency content of the spectrum also has an effect on the loudness level. In this note the relation between loudness level and A-weighted sound level is analyzed for various environmental noise spectra, including spectra of traffic noise, aircraft noise, and industrial noise. From loudness levels calculated for these environmental noise spectra, diagrams are constructed that show the relation between loudness level, A-weighted sound level, and shape of the spectrum. The diagrams show that the upper limits of the loudness level for broadband environmental noise spectra are about 20 to 40 phon higher than the lower limits for narrowband spectra, which correspond to the loudness levels of pure tones. The diagrams are useful for assessing limitations and potential improvements of environmental noise control methods and policy based on A-weighted sound levels.
机译:在环境噪声控制中,通常采用A加权声级作为噪声对人的影响的近似度量。与人类对噪声的直接感知更紧密相关的一种度量是响度级别。在恒定的A加权声级下,噪声信号的响度级别会随噪声信号频谱的形状而显着变化。特别地,由于人类听力系统中的关键频带的影响,频谱的带宽对响度水平有很大的影响。频谱的低频成分也会影响响度水平。在本说明中,针对各种环境噪声频谱(包括交通噪声,飞机噪声和工业噪声的频谱)分析了响度级别和A加权声级之间的关系。根据为这些环境噪声频谱计算出的响度级别,可以构建图表,显示响度级别,A加权声级和频谱形状之间的关系。这些图显示,宽带环境噪声频谱的响度级别的上限比窄带频谱的下限(对应于纯音的响度级别)高约20至40 phon。这些图可用于评估基于A加权声级的环境噪声控制方法和策略的局限性和可能的​​改进。

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