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Microphone-array hearing aids with binaural output .I. Fixed-processing systems

机译:带双耳输出的麦克风阵列助听器固定处理系统

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This work is aimed at developing a design for the use of a microphone array with binaural hearing aids. The goal of such a hearing aid is to provide both the spatial-filtering benefits of the array and the natural benefits to sound localization and speech intelligibility that accrue from binaural listening. The present study examines two types of designs for fixed-processing systems: one in which independent arrays provide outputs to the two ears, and another in which the binaural outputs are derived from a single array. For the latter, various methods are used to merge array processing with binaural listening. In one approach, filters are designed to satisfy a frequency-dependent trade between directionality and binaural cue fidelity. In another, the microphone signals are filtered into low- and high-frequency components with the lowpass signals providing binaural cues and the highpass signal being the single output of the array processor. Acoustic and behavioral measurements were made in an anechoic chamber and in a moderately reverberant room to evaluate example systems. Theoretical performance was calculated for model arrays mounted on an idealized spherical head. Results show that both single- and dual-array systems provided target-intelligibility enhancements (2-4 dB improvements in speech reception threshold) relative to binaural cardioid microphones. In addition, the binaural-output systems provided cues that assist in sound localization, with resulting performance depending directly upon the cue fidelity. Finally, the sphere-based calculations accurately reflected the major features of the actual head-mounted array results, both in terms of directional sensitivity and output binaural cues.
机译:这项工作旨在开发一种将麦克风阵列与双耳助听器配合使用的设计。这种助听器的目标是既提供阵列的空间过滤优势,又为双耳聆听带来的声音定位和语音清晰度提供自然​​优势。本研究研究了固定处理系统的两种类型的设计:一种类型,其中独立的阵列为两只耳朵提供输出,另一种类型,其中双耳的输出来自单个阵列。对于后者,可以使用各种方法将阵列处理与双耳监听合并。在一种方法中,滤波器被设计成满足方向性和双耳提示保真度之间的频率相关的交易。在另一实施例中,麦克风信号被过滤成低频和高频分量,其中低通信号提供双耳提示,而高通信号是阵列处理器的单个输出。在消声室和中等混响室中进行声学和行为测量,以评估示例系统。计算了安装在理想球形喷头上的模型阵列的理论性能。结果表明,相对于双耳心型麦克风,单阵列和双阵列系统均提供了目标清晰度增强(语音接收阈值提高2-4 dB)。另外,双耳输出系统提供了有助于声音定位的提示,其产生的性能直接取决于提示的保真度。最后,基于球面的计算可以准确反映出实际头戴式阵列结果的主要特征,包括方向灵敏度和输出双耳提示。

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