首页> 外文会议>Human Factors and Ergonomics Society annual meeting;HFES 2009 >Vehicle Backup Alarm Localization (or Not): Effects of Passive and Electronic Hearing Protectors, Ambient Noise Level, and Backup Alarm Spectral Content
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Vehicle Backup Alarm Localization (or Not): Effects of Passive and Electronic Hearing Protectors, Ambient Noise Level, and Backup Alarm Spectral Content

机译:车辆后备警报的定位(是否):被动式和电子式听力保护器,环境噪声水平和后备警报频谱含量的影响

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A parametric human factors experiment employed a hemi-anechoic sound field in which listeners were required to localize a vehicular backup alarm warning signal in 360-degrees azimuth. Measures of localization performance included: 1) percentage correct localization, 2) percentage left/right localization errors, 3) percentage front/rear localization errors, and 4) the absolute deviation in degrees from the alarm's location. In summary, the data demonstrated that normal hearing listeners did not improve in their ability to localize the backup alarm warning signal in 360-degrees azimuth when wearing augmented hearing protectors (including dichotic sound transmission earmuffs, flat attenuation earplugs, and level-dependent earplugs), as compared to when wearing conventional passive earmuffs or earplugs of the foam or flanged types. Furthermore, a diotic sound transmission earmuff resulted in the poorest localization. Localization was also degraded in 90 dBA pink noise, as compared to the relatively quiet condition of 60 dBA pink noise. An augmented backup alarm which incorporated 400 Hz and 4000 Hz components to exploit the benefits of interaural phase and intensity cues slightly improved localization compared to the standard, more narrow-bandwidth backup alarm, and these results have implications for the updating of backup alarm standards.
机译:一个参数化人为因素实验使用了半消声声场,在该声场中,要求听众将车辆后备警报警告信号定位在360度方位角上。定位性能的度量包括:1)正确定位的百分比,2)左/右定位误差的百分比,3)前后定位误差的百分比,以及4)与警报位置的度数绝对偏差。总而言之,数据表明,在佩戴增强型听力保护器(包括双耳发声的耳罩,扁平衰减的耳塞和依赖于水平的耳塞)时,普通听力的听众无法将后备警报警告信号定位在360度方位角上与佩戴传统的泡沫或法兰式被动式耳罩或耳塞时相比。此外,一个传声的耳罩导致最差的定位。与相对安静的60 dBA粉红噪声相比,在90 dBA粉红噪声中定位也降低了。与标准,带宽更窄的备用警报相比,增强型备用警报结合了400 Hz和4000 Hz的组件,以利用耳间相位和强度提示的优势,本地化程度略有改善,这些结果对于更新备用警报标准具有重要意义。

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