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Effects of introducing low-frequency harmonics in the perception of vocoded telephone speech

机译:低频谐波在声码电话语音感知中的影响

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摘要

Several studies have demonstrated that telephone use presents a challenge for most cochlear implant (CI) users, and this is attributed mainly to the narrow bandwidth (300–3400 Hz) introduced by the telephone network. The present study focuses on answering the question whether telephone speech recognition in noise can be improved by introducing, prior to vocoder processing, low-frequency harmonic information encompassing the missing (due to the telephone network) information residing in the 0–300 Hz band. Experiment 1 regenerates the main harmonics and adjacent partials within the 0–600 Hz range in corrupted (by steady noise) telephone speech which has been vocoded to simulate electric-acoustic stimulation (EAS). Results indicated that introducing the main harmonics alone did not produce any benefits in intelligibility. Substantial benefit (20%) was observed, however, when both main harmonics and adjacent partials were regenerated in the acoustic portion of EAS-vocoded telephone speech. A similar benefit was noted in Experiment 2 when low-frequency harmonic information was introduced prior to processing noise-corrupted telephone speech using an eight-channel vocoder. The gain in telephone speech intelligibility in noise obtained when low-frequency harmonic information was introduced can be attributed to the listeners having more reliable access to a combination of F0, glimpsing and lexical segmentation cues.
机译:多项研究表明,电话的使用对大多数人工耳蜗(CI)用户构成了挑战,这主要归因于电话网络引入的窄带宽(300-3400 Hz)。本研究着重回答以下问题:是否可以通过在声码器处理之前引入低频谐波信息来改善噪声中的电话语音识别,低频谐波信息包含驻留在0–300 Hz频带中的丢失(由于电话网络)信息。实验1重新生成了0-600 Hz范围内被破坏的(由稳定噪声引起的)电话语音中的主谐波和相邻部分,该语音已被语音编码以模拟电声刺激(EAS)。结果表明,仅引入主要谐波不会对清晰度产生任何好处。然而,当在EAS语音编码的电话语音的声学部分中同时产生主谐波和相邻部分时,可以观察到实质性收益(20%)。在实验2中注意到了类似的好处,即在使用八通道声码器处理受噪声破坏的电话语音之前引入了低频谐波信息。引入低频谐波信息后,电话语音的清晰度得到了提高,这可以归因于听众可以更可靠地访问F0,瞥见和词法分割线索的组合。

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