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Adaptive asynchronous analog to digital conversion for compressed biomedical sensing

机译:自适应异步模数转换,用于压缩生物医学传感

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Compressed sensing enables direct analog to digital information conversion of signals at rates much lower than the Nyquist rate. This eliminates the need for computationally intensive, high speed data acquisition and digital signal processing for compression. We illustrate the use of an asynchronous analog to digital converter (ADC) as a low power, low complexity compressed sensing digitizer of biomedical signals at source. A variable input-slope dependent adaptive technique is proposed for increased compression, reduced slope overload distortion error for fast moving signals, and reduced power consumption. ECG signal compression in a simulated environment, shows large compression for a given mean squared error compared to synchronous Nyquist rate A/D converters and a regular asynchronous A/D converter.
机译:压缩传感能够以比奈奎斯特速率低得多的速率直接进行信号的模数转换。这消除了对用于压缩的计算密集型高速数据采集和数字信号处理的需求。我们说明了使用异步模数转换器(ADC)作为源处生物医学信号的低功耗,低复杂度压缩传感数字化仪。提出了一种可变的依赖于输入斜率的自适应技术,以提高压缩率,减小快速移动信号的斜率过载失真误差并降低功耗。与同步奈奎斯特速率A / D转换器和常规异步A / D转换器相比,在模拟环境中的ECG信号压缩在给定的均方误差下显示出较大的压缩率。

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