Chung King, Mongeau Luc, McKibben Nicholas
Department of Allied Health and Communicative Disorders, Northern Illinois University, DeKalb, Illinois 60115, USA.
J Acoust Soc Am. 2009 Apr;125(4):2243-59. doi: 10.1121/1.3086268.
Wind noise can be a significant problem for hearing instrument users. This study examined the polar characteristics of flow noise at outputs of two behind-the-ear digital hearing aids, and a microphone mounted on the surface of a cylinder at flow velocities ranging from a gentle breeze (4.5 m/s) to a strong gale (22.5 m/s) . The hearing aids were programed in an anechoic chamber, and tested in a quiet wind tunnel for flow noise recordings. Flow noise levels were estimated by normalizing the overall gain of the hearing aids to 0 dB. The results indicated that the two hearing aids had similar flow noise characteristics: The noise level was generally the lowest when the microphone faced upstream, higher when the microphone faced downstream, and the highest for frontal and rearward incidence angles. Directional microphones often generated higher flow noise level than omnidirectional microphones but they could reduce far-field background noise, resulting in a lower ambient noise level than omnidirectional microphones. Data for the academic microphone- on-cylinder configuration suggested that both turbulence and flow impingement might have contributed to the generation of flow noise in the hearing aids. Clinical and engineering design applications are discussed.
风噪声对于助听器使用者来说可能是一个重大问题。本研究考察了两款耳背式数字助听器输出端的气流噪声的极坐标特性,以及一个安装在圆柱体表面的麦克风在微风(4.5米/秒)到狂风(22.5米/秒)的流速范围内的气流噪声的极坐标特性。这些助听器在消声室中进行编程,并在安静的风洞中进行气流噪声记录测试。通过将助听器的总增益归一化为0分贝来估计气流噪声水平。结果表明,这两款助听器具有相似的气流噪声特性:当麦克风面向上游时,噪声水平通常最低;当麦克风面向下游时,噪声水平较高;而在前后入射角时,噪声水平最高。定向麦克风通常比全向麦克风产生更高的气流噪声水平,但它们可以降低远场背景噪声,从而使环境噪声水平低于全向麦克风。关于学术用的圆柱体表面麦克风配置的数据表明,湍流和气流撞击可能都对助听器中气流噪声的产生起到了作用。文中还讨论了临床和工程设计应用。