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Phase Sensitive Detector for Multi-electrode Electromagnetic Flowmeter

机译:多电极电磁流量计相敏检测器

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The phase velocity measurement of multi-phase flow is of great interest for many industrial processes, regarding the process efficiency and safety. In flow measurement, the electromagnetic flowmeter (EMF) has usually been considered as a high standard velocity measurement tool for its advantages of high reliability, strong corrosion-resistance, high measurement accuracy, and non-intrusive characteristic. In EMF, the boundary voltage is closely related to the velocity profile across its sensing region. Conventionally, it employs a bipolar square/sinusoidal waveform current in the excitation coils to produce an alternating electromagnetic field. When EMF is used to measure the asymmetric velocity field distribution, there are serious systematic errors. The research on EMF with multi-electrode provides a solution to this problem. However, multi-electrode leads to the decrease of the equivalent output impedance of the sensor and the serious interference signal, making it more challenging to accurately obtain the signal of velocity. In this paper, a phase sensitive detector has been developed for measuring the multielectrode EMF signals. The EMF signals usually suffer from significant interferences, especially the quadrature interference. To reduce the quadrature interference signal, a synchronous differential technique is employed. Experimental results showed that the circuit achieved a flow velocity resolution of 0.01 m/s, and a relative error $arepsilon$ less than 0.6%.
机译:对于处理效率和安全性,多相流的相速度测量对于许多工业过程具有很大的兴趣。在流量测量中,电磁流量计(EMF)通常被认为是高标准速度测量工具,其优点是具有高可靠性,耐腐蚀,高测量精度和非侵入性特性的优点。在EMF中,边界电压与其传感区域的速度曲线密切相关。传统上,它采用激励线圈中的双极正方形/正弦波形电流以产生交流电磁场。当EMF用于测量不对称速度场分布时,存在严重的系统错误。具有多电极的EMF的研究为这个问题提供了解决方案。然而,多电极导致传感器和严重干扰信号的等效输出阻抗的降低,使得精确地获得速度的信号更具挑战性。在本文中,已经开发了一种相位敏感检测器来测量多电极EMF信号。 EMF信号通常遭受显着的干扰,尤其是正交干扰。为了降低正交干扰信号,采用同步差分技术。实验结果表明,电路实现了0.01米/秒的流速分辨率,以及相对误差 $ varepsilon $ 小于0.6%。

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