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Improving the Accuracy of Smart Devices to Measure Noise Exposure

机译:提高智能设备测量噪声暴露的准确性

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摘要

Occupational noise exposure is one of the most frequent hazards present in the workplace; up to 22 million workers have potentially hazardous noise exposures in the US. As a result, noise-induced hearing loss is one of the most common occupational injuries in the United States. Workers in manufacturing, construction, and the military are at the highest risk for hearing loss. Despite the large number of people exposed to high levels of noise at work, many occupations have not been adequately evaluated for noise exposure. The objective of this experiment was to investigate whether or not iOS smartphones and other smart devices (Apple iPhones and iPods) could be used as reliable instruments to measure noise exposures. For this experiment three different types of microphones were tested with a single model of iPod and three generations of iPhones: the internal microphones on the device, a low-end lapel microphone, and a high-end lapel microphone marketed as being compliant with the International Electrotechnical Commission's (IEC) standard for a Class 2-microphone. All possible combinations of microphones and noise measurement applications were tested in a controlled environment using several different levels of pink noise ranging from 60 to 100 dBA. Results were compared to simultaneous measurements made using a Type 1 sound level measurement system. Analysis of variance and Tukey's honest significant difference (HSD) test were used to determine if the results differed by microphone or noise measurement application. Levels measured with external microphones combined with certain noise measurement applications did not differ significantly from levels measured with the Type 1 sound measurement system. Results showed that it may be possible to use iOS smartphones and smart devices, with specific combinations of measurement applications and calibrated external microphones, to collect reliable, occupational noise exposure data under certain conditions and within the limitations of the device. Further research is needed to determine how these devices compare to traditional noise dosimeter under real-world conditions.
机译:职业噪声暴露是工作场所中最常见的危害之一。在美国,多达2200万名工人具有潜在的危险噪声暴露。结果,噪声引起的听力丧失是美国最常见的职业伤害之一。制造,建筑和军事部门的工人听力损失的风险最高。尽管在工作中有大量人暴露于高水平的噪声中,但许多职业尚未得到充分的噪声暴露评估。该实验的目的是调查是否可以将iOS智能手机和其他智能设备(Apple iPhone和iPod)用作测量噪声暴露的可靠工具。在此实验中,使用单一型号的iPod和三代iPhone对三种不同类型的麦克风进行了测试:设备上的内部麦克风,低端翻领麦克风和市售符合国际标准的高端翻领麦克风电工委员会(IEC)的2类麦克风标准。麦克风和噪声测量应用程序的所有可能组合都是在受控环境中使用从60到100 dBA的几种不同级别的粉红噪声进行测试的。将结果与使用1型声级测量系统进行的同时测量进行比较。方差分析和Tukey的诚实有效差(HSD)检验用于确定麦克风或噪声测量应用程序的结果是否有所不同。使用外部麦克风结合某些噪声测量应用程序测量的电平与使用1型声音测量系统测量的电平没有显着差异。结果表明,有可能使用iOS智能手机和智能设备,并结合特定的测量应用程序和经过校准的外部麦克风,以在某些条件下和设备限制内收集可靠的职业噪声暴露数据。需要进一步研究以确定这些设备在实际条件下如何与传统噪声剂量计进行比较。

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