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Microprocessor-controlled signal-to-noise ratio measurement system for speech codes

机译:微处理器控制的语音代码信噪比测量系统

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Engineers occupied in the development of hardware coder-decoder pairs (codecs) need an objective performance measure. Such a measure is the mean-square error (MSE). For complicated signals, such as speech signals, the error signal e(t) = Si(t) − s0(t) is hard to obtain. The reason for this is that each codec has a nonzero delay and a nonunity gain. This makes a straightforward subtraction of the output from the input signal impossible. This paper describes an accurate microprocessor-based measuring system applicable for the evaluation of speech codecs. In this system, the nonzero delay and the nonunity gain of the codec under test are compensated. Thus the error signal can be obtained by means of a differential amplifier. During a predefined period, the input and error signal are measured and the mean-square values of both are calculated. The ratio of these values, expressed in decibels is presented as the result of the measurement. Any input signal can be used, but since the system is intended for codecs of communication quality, the frequency range is limited to 3400 Hz. Signal-to-noise ratios (SNR''s) of up to 70 dB can be measured.
机译:从事硬件编解码器对(编解码器)开发的工程师需要客观的性能度量。这种度量是均方误差(MSE)。对于诸如语音信号之类的复杂信号,很难获得误差信号e(t)= Si(t)-s0(t)。这样做的原因是每个编解码器都有一个非零延迟和一个非单位增益。这使得不可能直接从输入信号中减去输出。本文介绍了一种适用于语音编解码器评估的基于微处理器的精确测量系统。在这个系统中,被测编解码器的非零延迟和非单位增益得到补偿。因此,可以通过差分放大器获得误差信号。在预定义的时间段内,将测量输入信号和误差信号,并计算两者的均方值。这些值的比率以分贝表示,作为测量结果。可以使用任何输入信号,但是由于该系统用于通信质量的编解码器,因此频率范围限制为3400 Hz。可以测量高达70 dB的信噪比(SNR)。

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