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用于双耳助听器的实时多频段动态压缩和降噪

Real-time multiband dynamic compression and noise reduction for binaural hearing aids.

作者信息

Kollmeier B, Peissig J, Hohmann V

机构信息

Drittes Physikalisches Institut, Universität Göttingen, Germany.

出版信息

J Rehabil Res Dev. 1993;30(1):82-94.

PMID:8263832
Abstract

A multi-signal-processor set-up is introduced that is used for real-time implementation of digital hearing aid algorithms that operate on stereophonic (i.e., binaural) input signals and perform signal processing in the frequency domain. A multiband dynamic compression algorithm was implemented which operates in 24 critical band filter channels, allows for interaction between frequency bands and stereo channels, and is fitted to the hearing of the individual patient by a loudness scaling method. In addition, a binaural noise reduction algorithm was implemented that amplifies sound emanating from the front and suppresses lateral noise sources as well as reverberation. These algorithms were optimized with respect to their processing parameters and by minimizing the processing artifacts. Different versions of the algorithms were tested in six listeners with sensorineural hearing impairment using both subjective quality assessment methods and speech intelligibility measurements in different acoustical situations. For most subjects, linear frequency shaping was subjectively assessed to be negative, although it improved speech intelligibility in noise. Additional compression was assessed to be positive and did not deteriorate speech intelligibility as long as the processing parameters were fitted carefully. All noise reduction strategies employed here were subjectively assessed to be positive. Although the suppression of reverberation only slightly improved speech intelligibility, a combination of directional filtering and dereverberation provided a substantial improvement in speech intelligibility for most subjects and for a certain range of signal-to-noise ratios. The real-time implementation was very helpful in optimizing and testing the algorithms, and the overall results indicate that carefully designed and fitted binaural hearing aids might be very beneficial for a large number of patients.

摘要

本文介绍了一种多信号处理器设置,用于实时实现对立体声(即双耳)输入信号进行操作并在频域中执行信号处理的数字助听器算法。实现了一种多频段动态压缩算法,该算法在24个临界带滤波器通道中运行,允许频段和立体声通道之间的相互作用,并通过响度缩放方法适配个体患者的听力。此外,还实现了一种双耳降噪算法,该算法放大来自前方的声音并抑制侧向噪声源以及混响。这些算法在处理参数方面进行了优化,并通过最小化处理伪像来实现。使用主观质量评估方法和在不同声学情况下的语音清晰度测量,在六名感音神经性听力损失的听众中测试了不同版本的算法。对于大多数受试者,线性频率整形在主观上被评估为负面,尽管它提高了噪声中的语音清晰度。只要仔细调整处理参数,额外的压缩被评估为正面且不会降低语音清晰度。这里采用的所有降噪策略在主观上都被评估为正面。尽管混响抑制仅略微提高了语音清晰度,但对于大多数受试者和一定范围的信噪比,定向滤波和去混响的组合在语音清晰度方面有显著提高。实时实现对于优化和测试算法非常有帮助,总体结果表明,精心设计和适配的双耳助听器可能对大量患者非常有益。

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