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Hybrid feedforward-feedback active noise reduction for hearing protection and communication

机译:混合前馈-主动降噪技术,用于听力保护和交流

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摘要

A hybrid active noise reduction (ANR) architecture is presented and validated for a eircumaural earcup and a communication earplug. The hybrid system combines source-independent feedback ANR with a Lyapunov-tuned leaky LMS filter (LyLMS) improving gain stability margins over feedforward ANR alone. In flat plate testing, the earcup demonstrates an overall C-weighted total noise reduction of 40 dB and 30-32 dB, respectively, for 50-800 Hz sum-of-tones noise and for aircraft or helicopter cockpit noise, improving low frequency (< 100 Hz) performance-by up to 15 dB over either control component acting individually. For the earplug, a filtered-X implementation of the LyLMS accommodates its nonconstant cancellation path gain. A fast time-domain identification method provides a high-fidelity, computationally efficient, infinite impulse response cancellation path model, which is used for both the filtered-X implementation and communication feedthrough. Insertion loss measurements made with a manikin show overall C-weighted total noise reduction provided by the ANR earplug of 46-48 dB for sum-of-tones 80-2000 Hz and 40-41 dB from 63 to 3000 Hz for UH-60 helicopter noise, with negligible degradation in attenuation during speech communication. For both hearing protectors, a stability metric improves by a factor of 2 to several orders of magnitude through hybrid ANR. (c) 2006 Acoustical Society of America.
机译:提出了一种混合主动降噪(ANR)架构,并已针对电子耳罩和通信耳塞进行了验证。混合系统将独立于源的反馈ANR与Lyapunov调谐的泄漏LMS滤波器(LyLMS)结合在一起,与单独的前馈ANR相比,提高了增益稳定性裕度。在平板测试中,对于50-800 Hz的音调总和噪声以及飞机或直升机驾驶舱噪声,耳罩分别显示了C加权的总体总噪声降低,分别为40 dB和30-32 dB,从而改善了低频( <100 Hz)的性能-在任一个单独控制的组件上最高可达到15 dB。对于耳塞,LyLMS的X滤波实现可适应其非恒定消除路径增益。快速的时域识别方法提供了高保真,计算效率高的无限冲激响应消除路径模型,该模型既用于已过滤的X实现又用于通信馈通。使用人体模型进行的插入损耗测量显示,对于80-2000 Hz的总和,对于UH-60直升机,从63-3000 Hz的总和,ANR耳塞可提供46-48 dB的总体C加权总降噪效果噪声,在语音通信过程中衰减的衰减可忽略不计。对于两个听力保护器,通过混合ANR,稳定性指标可提高2到几个数量级。 (c)2006年美国声学学会。

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