J. Fernandez Ramos, J. C. Tejero, J. A. Hidalgo, M. J. Martin, A. Gago
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本文介绍了一种用于助听器多波段模拟系统的窄带信号压缩电路的设计和评价。该系统有12个窄带模块。每个模块由四个阶段组成。第一级是带通滤波器,用于选择模块的带宽。第二阶段,本文的研究对象,是一个执行非线性运算的压缩电路,以消除自动增益控制系统中典型的攻击和释放时间。第三级是与第一级类似的另一个带通滤波器,其功能是减少压缩级产生的失真。第四级是可控线性增益级。仿真和实验结果表明,该压缩电路在语音信号的动态范围内具有良好的精度。当输入信号的一些重要共振峰非常接近时,输出窄带滤波器在很大程度上降低了所有压缩系统固有的谐波和互调失真。
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Compression circuit of a multiband analog system for hearing aid
This paper describes the design and evaluation of a circuit which performs the compression of narrow-band signals within a multiband analog system for a hearing aid. The system has twelve narrow-band modules. Each module is formed by four stages. The first stage is a band-pass filter which selects the bandwidth of the module. The second stage, the object of this paper, is a compression circuit which performs a nonlinear operation for removing the attack and release times typical of automatic gain control systems. The third stage is another band-pass filter like the first, the function of which is to reduce the distortion produced by the compression stage. The fourth stage is a controlled linear gain stage. The simulation and experimental results obtained show that the compression circuit has good accuracy within the dynamic range of speech signals. The output narrow-band filter reduces to a great extent the harmonic and intermodulation distortion inherent in all compression systems when the input signal has some important formants very close.
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