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A Novel Method of Multi-Information Acquisition for Electromagnetic Flow Meters

机译:电磁流量计多信息采集的新方法

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摘要

In this paper, a novel method is proposed for multi-information acquisition from the electromagnetic flow meter, using magnetic excitation to measure the fluid velocity and electrochemistry impedance spectroscopy (EIS) for both the fluid quality and the contamination level of the transducer. The impedance spectra of the transducer are measured with an additional electrical stimulus in series with the electrode measurement loop. The series connection mode instead of the parallel one improves the signal-to-noise ratio (SNR) of the fluid velocity measurement and offers a wide range of impedance measurements by using a sample capacitance. In addition, a multi-frequency synchronous excitation source is synthesized based on the method of dual-base power sequences for fast EIS measurement. The conductivity measurements in the range of 1.7 μS/cm–2 mS/cm showed a relatively high accuracy with a measurement error of 5%, and the electrode adhesion detection on both with coating and no coating showed the ability of the qualitative determination of the electrode adhesion, which validated the feasibility of the multi-information acquisition method for the electromagnetic flow meter (EMFM).
机译:本文提出了一种从电磁流量计获取多信息的新方法,该方法利用磁激励来测量流体速度和电化学阻抗谱(EIS),以测量传感器的流体质量和污染水平。换能器的阻抗谱是通过与电极测量回路串联的附加电刺激来测量的。串联模式而不是并联模式提高了流体速度测量的信噪比(SNR),并通过使用采样电容提供了广泛的阻抗测量范围。另外,基于双基功率序列的方法,合成了一种多频同步激励源,用于快速EIS测量。在1.7μS/ cm–2 mS / cm范围内的电导率测量显示出相对较高的准确度,测量误差为5%,在有涂层和无涂层的情况下进行电极粘附检测均表明可以定性地测定电极附着力,这证明了电磁流量计(EMFM)的多信息采集方法的可行性。

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