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手机:语音清晰度与噪声及射频电磁场暴露之间的权衡。

Mobile phones: A trade-off between speech intelligibility and exposure to noise levels and to radio-frequency electromagnetic fields.

机构信息

Department of Information Technology, Ghent University/iMinds, Technologiepark 126, Ghent B-9052, Belgium; Berkeley Wireless Research Center, Department of Electrical Engineering and Computer Sciences, University of California, Berkeley, 2108 Allston Way, Suite 200, Berkeley, CA 94704, USA.

Department of Information Technology, Ghent University/iMinds, Technologiepark 126, Ghent B-9052, Belgium; École d'orthophonie et d'audiologie, Université de Montréal, 7077 Av du Parc, Montréal, QC H3N1X7, Canada.

出版信息

Environ Res. 2019 Aug;175:1-10. doi: 10.1016/j.envres.2019.05.006. Epub 2019 May 8.

Abstract

When making phone calls, cellphone and smartphone users are exposed to radio-frequency (RF) electromagnetic fields (EMFs) and sound pressure simultaneously. Speech intelligibility during mobile phone calls is related to the sound pressure level of speech relative to potential background sounds and also to the RF-EMF exposure, since the signal quality is correlated with the RF-EMF strength. Additionally, speech intelligibility, sound pressure level, and exposure to RF-EMFs are dependent on how the call is made (on speaker, held at the ear, or with headsets). The relationship between speech intelligibility, sound exposure, and exposure to RF-EMFs is determined in this study. To this aim, the transmitted RF-EMF power was recorded during phone calls made by 53 subjects in three different, controlled exposure scenarios: calling with the phone at the ear, calling in speaker-mode, and calling with a headset. This emitted power is directly proportional to the exposure to RF EMFs and is translated into specific absorption rate using numerical simulations. Simultaneously, sound pressure levels have been recorded and speech intelligibility has been assessed during each phone call. The results show that exposure to RF-EMFs, quantified as the specific absorption in the head, will be reduced when speaker-mode or a headset is used, in comparison to calling next to the ear. Additionally, personal exposure to sound pressure is also found to be highest in the condition where the phone is held next to the ear. On the other hand, speech perception is found to be the best when calling with a phone next to the ear in comparison to the other studied conditions, when background noise is present.

摘要

当打电话时,手机和智能手机用户同时会受到射频(RF)电磁场(EMF)和声音压力的影响。手机通话中的语音清晰度与语音的声压级相对于潜在背景噪声有关,也与 RF-EMF 暴露有关,因为信号质量与 RF-EMF 强度相关。此外,语音清晰度、声压级和对 RF-EMF 的暴露取决于通话方式(扬声器、放在耳边或使用耳机)。本研究确定了语音清晰度、声音暴露和 RF-EMF 暴露之间的关系。为此,在三种不同的受控暴露情况下,对 53 名受试者在打电话时记录了传输的 RF-EMF 功率:将手机放在耳边打电话、使用扬声器模式打电话和使用耳机打电话。该发射功率与 RF-EMF 暴露直接成正比,并通过数值模拟转换为特定吸收率。同时,在每次通话中记录了声压级并评估了语音清晰度。结果表明,与将手机放在耳边打电话相比,使用扬声器模式或耳机打电话时,头部的特定吸收率表示的 RF-EMF 暴露会降低。此外,当手机放在耳边时,个人暴露的声压也被发现是最高的。另一方面,当存在背景噪声时,与其他研究条件相比,将手机放在耳边打电话时的语音感知被发现是最好的。

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