Suppr超能文献

[用于改善飞行员言语识别能力的电子噪声补偿]

[Electronic noise compensation for improving speech discrimination in airplane pilots].

作者信息

Matschke R G, Pösselt C, Veit I, Andresen U

机构信息

HNO-Abteilung, Ruhr-Universität Bochum am Prosper-Hospital Recklinghausen.

出版信息

Laryngorhinootologie. 1989 Feb;68(2):101-9. doi: 10.1055/s-2007-998295.

Abstract

Noise exposure measurements were performed in pilots of the Federal Navy during realistic flight situations. The ambient noise levels during regular flight service were maintained at levels nearly all the time above 90 dB. To avoid occupational hearing loss, the "Noise Injury Prevention Code" issued by the insurers would demand wearing personal ear protection, e.g. ear plugs. But such equipment in the aircraft cockpit would have precisely the opposite effect, because one of the reasons for possible damage to hearing is radio communication. To be able to understand radio traffic in spite of the noisy environment, headphone volume must be raised above the noise of the engines. The use of ear plugs can be of only limited value. Whereas pilots with normal hearing show only little impairment of speech intelligibility, those with noise-induced hearing loss show substantial impairment that varies in proportion to their hearing loss. Communication abilities may be drastically reduced which may compromise the reliability of radio traffic. Cockpit noise has its maximum intensity around 125 Hz and flight helmets and ear defenders are not very effective in low frequency ranges. Sennheiser electronic KG developed an active noise compensation circuit, which makes use of the "anti noise" principle. Here the outside noises picked up by two microphones integrated into the headset are processed electronically in such a way that they largely neutralise the original noise. It had to be made sure that the radio traffic signal was not also compensated and that the signal to noise ratio was clearly increased.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在联邦海军飞行员执行实际飞行任务期间进行了噪声暴露测量。在常规飞行服务过程中,环境噪声水平几乎一直保持在90分贝以上。为避免职业性听力损失,保险公司发布的“噪声伤害预防规范”要求佩戴个人耳部防护装置,如耳塞。但在飞机驾驶舱中使用此类设备会产生恰恰相反的效果,因为听力可能受损的一个原因是无线电通信。为了在嘈杂环境中仍能听懂无线电通信内容,耳机音量必须调至高于发动机噪声的水平。使用耳塞的价值有限。听力正常的飞行员语音清晰度仅有轻微受损,而那些因噪声导致听力损失的飞行员语音清晰度则有显著受损,且与他们的听力损失程度成比例变化。通信能力可能会大幅下降,这可能会影响无线电通信的可靠性。驾驶舱噪声在125赫兹左右强度最大,飞行头盔和耳部防护装置在低频范围内效果不佳。森海塞尔电子股份公司研发了一种有源噪声补偿电路,它利用了“反噪声”原理。在此,集成在头戴式耳机中的两个麦克风采集到的外界噪声会经过电子处理,使其在很大程度上抵消原始噪声。必须确保无线电通信信号不会被抵消,并且信噪比能明显提高。(摘要截选至250词)

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验