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Application of an extended equalization-cancellation model to speech intelligibility with spatially distributed maskers

机译:扩展均衡消除模型在具有空间分布掩蔽器的语音清晰度中的应用

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摘要

An extended version of the equalization-cancellation (EC) model of binaural processing is described and applied to speech intelligibility tasks in the presence of multiple maskers. The model incorporates time-varying jitters, both in time and amplitude, and implements the equalization and cancellation operations in each frequency band independently. The model is consistent with the original EC model in predicting tone-detection performance for a large set of configurations. When the model is applied to speech, the speech intelligibility index is used to predict speech intelligibility performance in a variety of conditions. Specific conditions addressed include different types of maskers, different numbers of maskers, and different spatial locations of maskers. Model predictions are compared with empirical measurements reported by Hawley et al. [J. Acoust. Soc. Am. 115, 833–843 (2004)] and by Marrone et al. [J. Acoust. Soc. Am. 124, 1146–1158 (2008)]. The model succeeds in predicting speech intelligibility performance when maskers are speech-shaped noise or broadband-modulated speech-shaped noise but fails when the maskers are speech or reversed speech.
机译:描述了双耳处理的均衡消除(EC)模型的扩展版本,并将其应用于存在多个掩蔽器的语音清晰度任务。该模型包含时间和幅度随时间变化的抖动,并在每个频带中独立实现均衡和消除操作。该模型在预测大量配置的音调检测性能方面与原始EC模型一致。将模型应用于语音时,语音清晰度指数可用于预测各种条件下的语音清晰度。解决的特定条件包括不同类型的遮罩,不同数量的遮罩以及不同的遮罩空间位置。将模型预测与Hawley等人报告的经验测量值进行比较。 [J. co Soc。上午。 115,833–843(2004)]和Marrone等人。 [J. co Soc。上午。 124,1146–1158(2008)]。当掩蔽器是语音形噪声或宽带调制的语音形噪声时,该模型可以成功预测语音清晰度,但是当掩蔽器是语音或反向语音时,该模型将失败。

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