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Analog-to-Digital Conversion to Accommodate the Dynamics of Live Music in Hearing Instruments

机译:模数转换以适应助听器中现场音乐的动态变化

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摘要

Hearing instrument design focuses on the amplification of speech to reduce the negative effects of hearing loss. Many amateur and professional musicians, along with music enthusiasts, also require their hearing instruments to perform well when listening to the frequent, high amplitude peaks of live music. One limitation, in most current digital hearing instruments with 16-bit analog-to-digital (A/D) converters, is that the compressor before the A/D conversion is limited to 95 dB (SPL) or less at the input. This is more than adequate for the dynamic range of speech; however, this does not accommodate the amplitude peaks present in live music. The hearing instrument input compression system can be adjusted to accommodate for the amplitudes present in music that would otherwise be compressed before the A/D converter in the hearing instrument. The methodology behind this technological approach will be presented along with measurements to demonstrate its effectiveness.
机译:助听器设计的重点是语音的放大,以减少听力损失的负面影响。许多业余和专业音乐家,以及音乐发烧友,还要求他们的听力仪器在收听现场音乐中频繁出现的高振幅峰值时表现良好。在当前大多数具有16位模数(A / D)转换器的数字听力仪器中,一个限制是,在A / D转换之前,压缩器的输入端限制为95 dB(SPL)或更小。对于语音的动态范围,这已经足够了。但是,这不能容纳现场音乐中出现的振幅峰值。可以调节助听器输入压缩系统,以适应音乐中存在的振幅,否则该振幅会在助听器中的A / D转换器之前被压缩。该技术方法背后的方法论将与测量结果一起展示,以证明其有效性。

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