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Real-Time Implementation of an Efficient Speech Enhancement Algorithm for Digital Hearing Aids

机译:数字助听器的高效语音增强算法的实时实现

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摘要

In order to remove background noise and improve the quality of speech for digital hearing aids, a single-channel speech enhancement algorithm is proposed. The algorithm is implemented and assessed on a digital hearing aid platform based on the TI DSP TMS320VC5502 chip. Assuming that background noise is stationary or varies slowly, an energy-based voice activity detection algorithm is adopted by adaptively tracking the minima and maxima of the power envelope in noisy speech. The target speech is then enhanced by using a Wiener filter, on the basis of a short-term power spectral estimation. To deal with the distracting musical noise of the processed speech, phase randomization, along with adjacent spectral averaging, is adopted. Objective measures and an informal hearing test both show an improved performance as well as obvious attenuation of residual noise. The low power consumption and high efficiency render the whole algorithm very applicable for use in digital hearing aids.
机译:为了消除背景噪声并提高数字助听器的语音质量,提出了一种单通道语音增强算法。该算法是在基于TI DSP TMS320VC5502芯片的数字助听器平台上实现和评估的。假设背景噪声是平稳的或缓慢变化的,则通过自适应地跟踪嘈杂语音中功率包络的最小值和最大值来采用基于能量的语音活动检测算法。然后基于短期功率谱估计,使用维纳滤波器增强目标语音。为了处理处理后的语音中分散注意力的音乐噪声,采用相位随机化以及相邻频谱平均。客观的措施和非正式的听力测试均显示出性能的改善以及残余噪声的明显衰减。低功耗和高效率使整个算法非常适用于数字助听器。

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