Title :
A 1000-measurement frames/second ERT data capture system with real-time visualization
Author :
Wilkinson, Andrew J. ; Randall, E.W. ; Cilliers, J.J. ; Durrett, D.R. ; Naidoo, T. ; Long, T.
Author_Institution :
Dept. of Electr. Eng., Univ. of Cape Town, South Africa
fDate :
4/1/2005 12:00:00 AM
Abstract :
This paper describes the design of a 16-electrode high-speed (1000 frames/s) electrical resistance tomography system with real-time visualization. The instrument utilizes a switched dc current pulse technique in conjunction with parallel data acquisition to achieve the high-data capture rates. The reconstruct algorithm is implemented using a single iteration Newton-Raphson method, which executes in under 1 ms. Data sets are presented that verify its operation. A calibration technique is described which improves the sensitivity of the current pulse measuring system and allows phenomena such as the dynamics of nonuniform slurries and gas distribution in aeration systems to be investigated. Furthermore, the calibration scheme described compensates significantly for the effect of impellers and baffles present in the measuring tank and allows more accurate reconstructions to be performed in the areas of interest.
Keywords :
Newton-Raphson method; calibration; data acquisition; data visualisation; electric impedance imaging; image reconstruction; real-time systems; tomography; ERT data capture system; aeration systems; capture rates; current pulse measuring system; electrical resistance tomography system; gas distribution; measuring tank; nonuniform slurries; parallel data acquisition; real ime visualization; reconstruct algorithm; single iteration Newton-Raphson method; switched dc current pulse technique; Calibration; Current measurement; Data acquisition; Data visualization; Electric resistance; Instruments; Newton method; Pulse measurements; Real time systems; Tomography; Calibration; current pulse; electrical resistance tomography (ERT); high speed;
Journal_Title :
Sensors Journal, IEEE
DOI :
10.1109/JSEN.2004.842445