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Model-Based Dereverberation Preserving Binaural Cues

机译:基于模型的混响保留双耳提示

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The ability of the human auditory system for sound localization mainly depends on the binaural cues, especially interaural time and level differences (ITD and ILD). In the context of digital hearing aids and binaural audio transmission systems, these cues can be severely degraded by independent bilateral signal processing such as dereverberation or noise reduction. This contribution presents a novel two-stage binaural dereverberation algorithm which explicitly preserves the binaural cues. The first stage is based on a statistical model of the room impulse responses (RIR) and comprises a spectral subtraction rule which reduces late reverberation only. It includes a smoothing process of the spectral gains to reduce musical tones. In a second stage, the residual reverberation is attenuated by a dual-channel Wiener filter. This is derived from a coherence model of the reverberant sound field taking into account shadowing effects of the head. The overall binaural-input binaural-output structure efficiently reduces both early and late reverberation. In experiments as well as informal listening tests using measured binaural room impulse responses, the proposed algorithm significantly improves speech quality according to objective and subjective measures.
机译:人类听觉系统进行声音本地化的能力主要取决于双耳提示,尤其是耳间时间和水平差异(ITD和ILD)。在数字助听器和双耳音频传输系统的背景下,这些提示可能会通过独立的双边信号处理(例如混响或降噪)而严重劣化。这一贡献提出了一种新颖的两阶段双耳混响算法,该算法明确保留了双耳线索。第一阶段基于房间冲激响应(RIR)的统计模型,并且包括仅减少后期混响的频谱减法规则。它包括频谱增益的平滑处理以减少音乐音调。在第二阶段,残余混响被双通道维纳滤波器衰减。这是从混响声场的相干模型得出的,其中考虑了头部的阴影效应。整个双耳输入双耳输出结构有效地减少了早期和晚期混响。在实验以及使用测得的双耳室冲动响应的非正式听觉测试中,该算法根据客观和主观的测量方法可以显着提高语音质量。

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