家用电器辐射甚高频声源识别的研究。

IF 1.3 4区 医学 Q3 AUDIOLOGY & SPEECH-LANGUAGE PATHOLOGY
Koki Harusawa
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引用次数: 0

摘要

利用两种头部躯干模拟器(HATS)研究了头部相关传递函数(HRTF)在甚高频区域的方位角特性。在听力阈值的测量中,有两种方法使用耳机或扬声器。一般情况下,会使用扬声器进行,因为声压校正和测量简单。然而,由于到达耳朵的声压级(SPL)受到头部微小运动的严重影响,使用扬声器在甚高频区域测量的听力阈值可能存在一些误差。此外,由于VHF声音的衍射产生的过量衰减非常大,因此靠近耳廓的声压级严重依赖于耳廓和耳头的形状。为了保证听力阈值的准确测量,明确声压级与头部和/或耳朵形状的关系是很重要的。本文报道了在左耳耳屏、耳廓和鼓膜三个不同位置测量的声压差计算的声压差,并从声压差的方位角特征讨论了声压差对头部和/或耳朵的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An investigation on source identification of very high frequency sounds radiated from home appliances around us.
We investigated the azimuth angle characteristics of head related transfer function (HRTF) at very high frequency region using two kinds of head and torso simulators (HATS). In the measurement of hearing thresholds, there are two ways using a headphone or a loudspeaker. In general, it will be carried out using a loudspeaker because sound pressure calibration and measurement are simple. However, the hearing threshold which measured using a loudspeaker at very high frequency region may contain some errors because sound pressure level (SPL) reaching the ear are seriously affected by a small movement of the head. Also, the SPL near the pinna seriously depends on both shapes of a pinna and a head because excess attenuation by diffraction of VHF sound is very large. To provide assurance for the accuracy measurement of hearing threshold, it is important to make clear the relationship between the SPL and shape of head and/or ear. In this paper, we reported the HRTFs calculated from the SPLs measured at three different positions of left ear - a tragus, an auricle and an eardrum and discussed the influence of head and/or ear of HATS from the azimuth angle characteristics of these HRTFs.
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来源期刊
Noise & Health
Noise & Health AUDIOLOGY & SPEECH-LANGUAGE PATHOLOGY-PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH
CiteScore
2.10
自引率
14.30%
发文量
27
审稿时长
6-12 weeks
期刊介绍: Noise and Health is the only International Journal devoted to research on all aspects of noise and its effects on human health. An inter-disciplinary journal for all professions concerned with auditory and non-auditory effects of occupational, environmental, and leisure noise. It aims to provide a forum for presentation of novel research material on a broad range of topics associated with noise pollution, its control and its detrimental effects on hearing and health. It will cover issues from basic experimental science through clinical evaluation and management, technical aspects of noise reduction systems and solutions to environmental issues relating to social and public health policy.
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