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A programmable sound processor for advanced hearing aid research

机译:用于高级助听器研究的可编程声音处理器

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A portable sound processor has been developed to facilitate research on advanced hearing aids. Because it is based on a digital signal processing integrated circuit (Motorola DSP56001), it can readily be programmed to execute novel algorithms. Furthermore, the parameters of these algorithms can be adjusted quickly and easily to suit the specific hearing characteristics of users. In the processor, microphone signals are digitized to a precision of 12 bits at a sampling rate of approximately 12 kHz for input to the DSP device. Subsequently, processed samples are delivered to the earphone by a novel, fully-digital class-D driver. This driver provides the advantages of a conventional class-D amplifier (high maximum output, low power consumption, low distortion) without some of the disadvantages (such as the need for precise analog circuitry). In addition, a cochlear implant driver is provided so that the processor is suitable for hearing-impaired people who use an implant and an acoustic hearing aid together. To reduce the computational demands on the DSP device, and therefore the power consumption, a running spectral analysis of incoming signals is provided by a custom-designed switched-capacitor integrated circuit incorporating 20 bandpass filters. The complete processor is pocket-sized and powered by batteries. An example is described of its use in providing frequency-shaped amplification for aid users with severe hearing impairment. Speech perception tests confirmed that the processor performed significantly better than the subjects' own hearing aids, probably because the digital filter provided a frequency response generally closer to the optimum for each user than the simpler analog aids.
机译:已经开发了便携式声音处理器以促进对高级助听器的研究。由于它基于数字信号处理集成电路(Motorola DSP56001),因此可以很容易地对其进行编程以执行新颖的算法。此外,可以快速轻松地调整这些算法的参数,以适应用户的特定听力特征。在处理器中,麦克风信号以大约12 kHz的采样率被数字化为12位精度,以输入到DSP器件。随后,经过处理的样本通过新颖的全数字D类驱动器传递到耳机。该驱动器具有传统D类放大器的优点(最大输出功率高,功耗低,失真小),而没有某些缺点(例如需要精确的模拟电路)。另外,提供了耳蜗植入物驱动器,使得该处理器适合于一起使用植入物和声学助听器的听力受损的人。为了减少对DSP器件的计算需求,从而减少功耗,通过定制设计的开关电容集成电路(包含20个带通滤波器)可以对输入信号进行运行频谱分析。完整的处理器为袖珍型,并由电池供电。描述了其在为严重听力受损的辅助用户提供频率整形放大中的用途的示例。语音感知测试证实处理器的性能明显优于受试者自己的助听器,这可能是因为数字滤波器提供的频率响应通常比简单的模拟助听器更接近每个用户的最佳状态。

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