一个有效的信号采集与自适应速率的A/D转换

S. Qaisar, R. Yahiaoui, T. Gharbi
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引用次数: 33

摘要

模数转换是现代电子系统的基本组成部分。几乎所有现有的adc(模数转换器)都是基于均匀采样理论。它使信号采集是时不变的。因此,它可能导致系统活动的无用增加,特别是在零星信号的情况下。为此,设计了一种基于交叉电平采样的自适应速率ADC。它可以根据输入信号的局部变化来调整转换活动。因此,它提供了一种智能信号采集,从而实现了高效的解决方案。研究了该算法在语音采集中的性能。结果显示,在获得的样本数量急剧减少,因此承诺在系统功率效率显著提高与经典方法相比。描述了一种测量所提出的转换器分辨率的方法。并给出了其设计流程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An efficient signal acquisition with an adaptive rate A/D conversion
The analog to digital conversion is an elementary part of the modern electronic systems. Almost all existing ADCs (Analog to Digital Converters) are based on the uniform sampling theory. It makes the signal acquisition time-invariant. Therefore, it can render a useless increase of the system activity, especially in the case of sporadic signals. Thus, an adaptive rate ADC which is based on the cross-level sampling is devised. It can adapt its conversion activity according to the input signal local variations. Therefore, it provides an intelligent signal acquisition which leads towards an efficient solution. The proposed ADC performance is studied for a speech acquisition. Results show a drastic reduction in the acquired number of samples and therefore promise a significant enhancement in the system power efficiency compared to the classical approach. A method to measure the proposed converter resolution is described. Moreover, its design flow is also presented.
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