DocumentCode
2674051
Title
A novel method for CMF signal processing based on the revised sliding recursive DTFT algorithm
Author
Shen Ting´ao ; Tu Yaqing ; Zhang Haitao
Author_Institution
Dept. of Inf. Eng., Logistical Eng. Univ., Chongqing, China
fYear
2012
fDate
23-25 May 2012
Firstpage
3311
Lastpage
3316
Abstract
There is a large computational load when measuring the phase difference between two signals of Coriolis mass flowmeter (CMF) because of redundancy calculations, which decreases the accuracy and real time qualities. A novel method for CMF signal processing is proposed based on the revised sliding recursive discrete-time Fourier transform (DTFT) algorithm. First, a new adaptive notch filter is introduced to filter the sensor output signals of the CMF and calculate the frequency. Then, a new method based on the revised sliding recursive DTFT algorithm is applied to calculate the real-time phase difference between two enhanced signals. With the frequency and the phase difference obtained, the time interval of the two signals is calculated, and then, the mass flowrate is derived. Simulation and experimental results show that the computational load of the complete set of algorithm is small and numerical overflow never happens along with higher accuracy of the CMF.
Keywords
adaptive filters; adaptive signal processing; computerised instrumentation; discrete Fourier transforms; flow measurement; flowmeters; notch filters; CMF signal processing; Coriolis mass flowmeter; adaptive notch filter; computational load; frequency difference; mass flowrate; numerical overflow; real-time phase difference; revised sliding recursive DTFT algorithm; revised sliding recursive discrete time Fourier transform algorithm; sensor output signal filtering; signal time interval; Adaptive filters; Convergence; Filtering algorithms; Real time systems; Signal processing algorithms; Time frequency analysis; Coriolis mass flowmeter (CMF); adaptive notch filter; frequency tracking; phase difference; revised sliding recursive discrete-time Fourier transform (DTFT) algorithm;
fLanguage
English
Publisher
ieee
Conference_Titel
Control and Decision Conference (CCDC), 2012 24th Chinese
Conference_Location
Taiyuan
Print_ISBN
978-1-4577-2073-4
Type
conf
DOI
10.1109/CCDC.2012.6244525
Filename
6244525
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