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Kurtosis corrected sound pressure level as a noise metric for risk assessment of occupational noises

机译:峰度校正了声压级,将其作为一种噪声指标,用于职业噪声风险评估

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摘要

Current noise guidelines use an energy-based noise metric to predict the risk of hearing loss, and thus ignore the effect of temporal characteristics of the noise. The practice is widely considered to underestimate the risk of a complex noise environment, where impulsive noises are embedded in a steady-state noise. A basic form for noise metrics is designed by combining the equivalent sound pressure level (SPL) and a temporal correction term defined as a function of kurtosis of the noise. Several noise metrics are developed by varying this basic form and evaluated utilizing existing chinchilla noise exposure data. It is shown that the kurtosis correction term significantly improves the correlation of the noise metric with the measured hearing losses in chinchillas. The average SPL of the frequency components of the noise that define the hearing loss with a kurtosis correction term is identified as the best noise metric among tested. One of the investigated metrics, the kurtosis-corrected A-weighted SPL, is applied to a human exposure study data as a preview of applying the metrics to human guidelines. The possibility of applying the noise metrics to human guidelines is discussed.
机译:当前的噪声准则使用基于能量的噪声度量来预测听力损失的风险,因此忽略了噪声的时间特性的影响。人们普遍认为这种做法低估了复杂噪声环境的风险,在这种环境中,脉冲噪声被嵌入到稳态噪声中。通过将等效声压级(SPL)和定义为噪声峰度的函数的时间校正项进行组合来设计噪声度量的基本形式。通过改变这种基本形式来开发几种噪声指标,并利用现有的黄鼠噪声暴露数据对其进行评估。结果表明,峰度校正项显着改善了噪声度量与龙猫中测得的听力损失的相关性。用峰度校正项定义听力损失的噪声频率分量的平均SPL被确定为测试中的最佳噪声度量。被调查的指标之一,经峰度校正的A加权SPL应用于人类暴露研究数据,作为将指标应用于人类指南的预览。讨论了将噪声度量应用于人类准则的可能性。

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