Abstract

A vortex flow meter employs a sensor based on the piezoelectric vibration principle to realize vortex signal acquisition, and therefore the measurement results are susceptible to vibration noise. In this paper, the generalized mode method is proposed based on the central tendency characteristic of the vortex signal and combined with the existing filter bank method. The method combining filter bank with the generalized mode is designed and applied in the signal-processing system of the vortex flow meter, which makes up for the defect that the filter bank method cannot filter out the noise in the sub-band. The simulation experiments verify the feasibility and anti-interference performance of the algorithm. Meanwhile, a comparison with two FFT (Fast Fourier Transform) spectrum analysis methods shows that the algorithm designed in this paper requires a smaller sample size and achieves better real-time performance. The actual anti-vibration experiment and calibration experiment verify that the signal-processing system of a vortex flow meter ensures good accuracy and repeatability.

Highlights

  • Flow measurement is one of the most important components of measurement science and technology

  • The algorithm proposed in this paper can deal with the periodic vibration noise in the sub-band better compared to the filter bank method [4]

  • A new central tendency analysis method called the generalized mode algorithm is proposed in this paper

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Summary

Introduction

Flow measurement is one of the most important components of measurement science and technology. According to the second characteristic of a vortex signal, the products of a vortex flow meter generally adopt the filter bank method to filter the noise by dividing the frequency band of signal processing [23,24]. There are few frequency-correction methods in the microprocessor, which is the key to the application of the filter bank method and the design of a high-precision vortex flow meter To solve this problem, a frequency correction method based on the central tendency of a vortex signal is proposed in this paper. A frequency correction method based on the central tendency of a vortex signal is proposed in this paper It is combined with the filter bank method to design a vortex flow meter signal processing system.

The Background of Generalized Mode
The Design of Generalized Mode Method
System Algorithm Design
The General Design of Simulation
Feasibility Performance
Anti-Interference Performance
Real-Time Performance
Anti-Vibration Experiment
Calibration Experiment
Discussion
Conclusions

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