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Extension and evaluation of a near-end listening enhancement algorithm for listeners with normal and impaired hearing

机译:具有正常和受损听力的倾听者近端听力增强算法的推广与评价

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摘要

In many applications in which speech is played back via a sound reinforcement system such as public address systems and mobile phones, speech intelligibility is degraded by additive environmental noise. A possible solution to maintain high intelligibility in noise is to pre-process the speech signal based on the estimated noise power at the position of the listener. The previously proposed AdaptDRC algorithm [Schepker, Rennies, and Doclo (2015). J. Acoust. Soc. Am. 138, 2692-2706] applies both frequency shaping and dynamic range compression under an equal-power constraint, where the processing is adaptively controlled by short-term estimates of the speech intelligibility index. Previous evaluations of the algorithm have focused on normal-hearing listeners. In this study, the algorithm was extended with an adaptive gain stage under an equal-peak-power constraint, and evaluated with eleven normal-hearing and ten mildly to moderately hearing-impaired listeners. For normal-hearing listeners, average improvements in speech reception thresholds of about 4 and 8 dB compared to the unprocessed reference condition were measured for the original algorithm and its extension, respectively. For hearing-impaired listeners, the average improvements were about 2 and 6 dB, indicating that the relative improvement due to the proposed adaptive gain stage was larger for these listeners than the benefit of the original processing stages. (C) 2017 Acoustical Society of America.
机译:在许多应用中,通过公共地址系统和移动电话等声音增强系统播放语音,语音可懂度是通过附加环境噪声劣化。在噪声中保持高可懂度的可能解决方案是基于估计噪声功率在听众的位置预处理语音信号。先前提出的AdaptDRC算法[Schepker,Rennies和Doclo(2015)。 J.ACOUST。 SOC。是。 138,2692-2706]在等功率约束下应用频率整形和动态范围压缩,其中通过语音可智能索引的短期估计自适应地控制处理。对算法的先前评估集中在正常听力侦听器上。在该研究中,算法在相等峰值 - 功率约束下的自适应增益级延伸,并用11个正常听力和10个温和地评估适度的听力受损的听众。对于正常听觉侦听器,针对原始算法及其扩展分别测量了与未处理的参考条件相比的约4和8dB的语音接收阈值的平均改进。对于听力受损的听众,平均改进约为2和6 dB,表明这些听众引起的相对改善比原始处理阶段的益处更大。 (c)2017年声学社会。

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    Fraunhofer Inst Digital Media Technol IDMT Project Grp Hearing Speech &

    Audio Technol D-26129 Oldenburg Germany;

    Fraunhofer Inst Digital Media Technol IDMT Project Grp Hearing Speech &

    Audio Technol D-26129 Oldenburg Germany;

    Fraunhofer Inst Digital Media Technol IDMT Project Grp Hearing Speech &

    Audio Technol D-26129 Oldenburg Germany;

    Carl von Ossietzky Univ Oldenburg Dept Med Phys &

    Acoust Signal Proc Grp D-26111 Oldenburg Germany;

    Fraunhofer Inst Digital Media Technol IDMT Project Grp Hearing Speech &

    Audio Technol D-26129 Oldenburg Germany;

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  • 正文语种 eng
  • 中图分类 声学;
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