DocumentCode
41241
Title
Experimental Study and Implementation of a Novel Digital Closed-Loop Control System for Coriolis Mass Flowmeter
Author
Chun Hu ; Dezhi Zheng ; Shangchun Fan
Author_Institution
Dept. of Instrum. Sci. & Opto-Electron. Eng., Beihang Univ., Beijing, China
Volume
13
Issue
8
fYear
2013
fDate
Aug. 2013
Firstpage
3032
Lastpage
3038
Abstract
Closed-loop control system undertakes the foundational task of maintaining the permanent vibration of the measuring tube for Coriolis Mass Flowmeter (CMF). In order to overcome the disadvantages of bad anti-jamming, slow response speed and high zero drift existing in conventional analog closed-loop system, a novel digital closed-loop control system is proposed in which the Multiplying Digital to Analog Converter is introduced to track the vibration signal of CMF in real time, together with the non-linear amplitude control method to vary the amplitude gain of the excitation signal, so that the measuring tube can be adjusted to vibrate with stable amplitude promptly. The real flow calibration experimental result shows that the maximum steady state relative error and repeatability are 0.147% and 0.039%, respectively. In addition, the start-up time of measuring tube can reach to 2.75 s.
Keywords
calibration; closed loop systems; digital control; digital-analogue conversion; flowmeters; nonlinear control systems; physical instrumentation control; signal processing; vibrations; CMF; antijamming; coriolis mass flowmeter; digital closed loop control system; excitation signal amplitude gain; high zero drift; maximum steady state relative error; measuring tube; multiplying digital to analog converter; nonlinear amplitude control method; permanent vibration; real flow calibration; repeatability; slow response speed; start-up time; vibration signal tracking; Coriolis mass flowmeter; digital close-loop system; multiplying digital to analog converter; pre-tuned parameter PI controller;
fLanguage
English
Journal_Title
Sensors Journal, IEEE
Publisher
ieee
ISSN
1530-437X
Type
jour
DOI
10.1109/JSEN.2013.2260859
Filename
6510450
Link To Document