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Study on a New Electromagnetic Flow Measurement Technology Based on Differential Correlation Detection

机译:基于差分相关检测的电磁流量测量新技术研究

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摘要

Under the conditions of low flow rate and strong noise, the current electromagnetic flowmeter (EMF) cannot satisfy the requirement for measurement or separate the actual flow signal and interference signal accurately. Correlation detection technology can reduce the bandwidth and suppress noise effectively using the periodic transmission of signal and noise randomness. As for the problem that the current anti-interference technology cannot suppress noise effectively, the noise and interference of the electromagnetic flowmeter were analyzed in this paper, and a design of the electromagnetic flowmeter based on differential correlation detection was proposed. Then, in order to verify the feasibility of the electromagnetic flow measurement system based on differential correlation, an experimental platform for the comparison between standard flow and measured flow was established and a verification experiment was carried out under special conditions and with flow calibration measurements. Finally, the data obtained in the experiment were analyzed. The research result showed that an electromagnetic flowmeter based on differential correlation detection satisfies the need for measurement completely. The lower limit of the flow rate of the electromagnetic flowmeter based on the differential correlation principle could reach 0.084 m/s. Under strong external interferences, the electromagnetic flowmeter based on differential correlation had a fluctuation range in output value of only 10 mV. This shows that the electromagnetic flowmeter based on the differential correlation principle has unique advantages in measurements taken under the conditions of strong noise, slurry flow, and low flow rate.
机译:在低流量,高噪声的条件下,当前的电磁流量计(EMF)无法满足测量要求,或者无法准确分离出实际的流量信号和干扰信号。相关检测技术可以利用信号的周期性传输和噪声随机性来减少带宽并有效地抑制噪声。针对目前的抗干扰技术不能有效抑制噪声的问题,本文对电磁流量计的噪声和干扰进行了分析,提出了基于差分相关检测的电磁流量计设计。然后,为了验证基于微分相关的电磁流量测量系统的可行性,建立了用于比较标准流量和实测流量的实验平台,并在特殊条件下进行了流量校准测量的验证实验。最后,分析了在实验中获得的数据。研究结果表明,基于微分相关检测的电磁流量计完全可以满足测量需求。根据微分相关原理,电磁流量计的流量下限可以达到0.084 m / s。在强烈的外部干扰下,基于微分相关的电磁流量计的输出值波动范围仅为10 mV。这表明基于微分相关原理的电磁流量计在强噪声,泥浆流量和低流量条件下进行测量时具有独特的优势。

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