首页> 外文会议>2011 4th IEEE International Workshop on Computational Advances in Multi-Sensor Adaptive Processing >Optimum microphone array for monaural and binaural in-the-canal hearing aids
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Optimum microphone array for monaural and binaural in-the-canal hearing aids

机译:用于单声道和双声道耳内助听器的最佳麦克风阵列

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Modern hearing aids include signal processing algorithms to improve the speech intelligibility by means of a microphone array, which can be monaural or binaural. In both cases, the signals are distorted by the well-known head-shadow effect that must be considered in the design. The main goal of this paper is to find the best microphone array configuration for in-the-canal hearing aids, constrained by the reduced dimension of such devices, in order to maximize the output gain and intelligibility when the array is steered to the desired direction. For this purpose, a total of 12 different array arrangements are compared, in terms of the array gain and intelligibility obtained by a Minimum Variance Distortionless Response (MVDR) beamformer, which also considers the head-shadow effect. The highest gain and intelligibility are obtained by a binaural array composed by a total of 8 microphones, 4 in diamond-shaped alignment in each ear. The results show the level of improvement achieved by increasing the number of microphones as well as using binaural arrays, giving rise to a compromise between the complexity of the array and the desired enhancement.
机译:现代助听器包括信号处理算法,可通过单声道或双声道麦克风阵列来提高语音清晰度。在这两种情况下,信号都会因设计中必须考虑的众所周知的头影效应而失真。本文的主要目标是找到适用于耳道内助听器的最佳麦克风阵列配置,但要受此类设备尺寸的限制,以便在将阵列转向所需方向时最大程度地提高输出增益和清晰度。为此,在最小增益无失真响应(MVDR)波束形成器获得的阵列增益和清晰度方面,总共比较了12种不同的阵列布置,该模型还考虑了头部阴影效应。通过双耳阵列获得最高的增益和清晰度,该双耳阵列由总共8个麦克风组成,每个耳朵中有4个呈菱形对齐。结果表明,通过增加麦克风数量以及使用双耳阵列可达到的改善水平,导致阵列的复杂性与所需增强之间的折衷。

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