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Rethinking Data Collection and Signal Processing. 1. Real-Time Oversampling Filter for Chemical Measurements

机译:重新思考数据收集和信号处理。 1.用于化学测量的实时过采样滤波器

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摘要

Minimizing noise in chemical measurements is critical to achieve low limits of detection and accurate measurements. We describe a real-time oversampling filter that offers a method to reduce stochastic noise in a time-dependent chemical measurement. The power of this technique is demonstrated in its application to the separation of dopamine and serotonin by micellar electrokinetic chromatography with amperometric detection. Signal-to-noise ratios were increased by almost an order of magnitude, allowing for limits of detection of 100 and 120 amol, respectively. Real-time oversampling filters can be implemented using simple software algorithms and require no change to existing experimental apparatus. The application is not limited to analytical separations, and this technique can be used to improve the signal-to-noise ratio in any experiment where the necessary sampling rate is less than the maximum sampling rate of the analog-to-digital converter. Theory, implementation, and the performance of this filter are described. We propose that this technique should be the default mode of operation for an analog-to-digital converter.
机译:最小化化学测量中的噪声对于实现低检测限和精确测量至关重要。我们描述了一种实时过采样滤波器,该滤波器提供了一种方法,可以减少与时间有关的化学测量中的随机噪声。通过胶束动色谱-安培检测法分离多巴胺和5-羟色胺,证明了该技术的强大功能。信噪比提高了近一个数量级,分别允许100和120 amol的检出限。实时过采样滤波器可以使用简单的软件算法来实现,而无需更改现有的实验设备。该应用不限于分析分离,并且该技术可用于在必要采样率小于模数转换器的最大采样率的任何实验中提高信噪比。描述了该滤波器的理论,实现和性能。我们建议,该技术应该是模数转换器的默认操作模式。

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