DUAL MODALITY TOMOGRAPHY : Principles, Techniques & Applications

Authors

Jaysuman Pusppanathan
Ruzairi Abdul Rahim
Norhaliza Abdul Wahab
Elmy Johana Mohamad

Keywords:

Sustainable, tomography, operation, advanced

Synopsis

There is a widespread need for the direct analysis of the internal process plants in order to improve design and operation of equipment. Process tomography involves using tomographic imaging methods to manipulate data from remote sensors in order to obtain precise quantitative information from inaccessible locations. This book discusses on Dual Modality Tomography - Principles, Techniques & Application. It’s very useful to the process engineer and researcher in this area.

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References

A. C. Kak and M. Slaney. (2001). Principles of Computerized Tomographic Imaging, Classics in Applied Mathematics ed.: Society for Industrial and Applied Mathematics.

A. Deng, J. Wu, and S. Yang. (2011). “An Image Fusion Algorithm Based on Discrete Wavelet Transform and Canny Operator,” in International Conference, CESM 2011, Wuhan, China, pp. 32-38.

A. Hunt. (2014). “Weighing without Touching: Applying Electrical Capacitance Tomography to Mass Flowrate Measurement in Multiphase Flows,” Measurement and Control, vol. 47, pp. 19-25, February 1, 2014.

A. M. Olmos, J. A. Primicia, and J. L. F. Marron. (2006). “Influence of Shielding Arrangement on ECT Sensors,” Sensor Journal, vol. 6, pp. 1118-1127.

A. M. Olmos, J. A. Primicia, and J. L. F. Marron. (2007). “Simulation design of electrical capacitance tomography sensors,” Science, Measurement & Technology, IET, vol. 1, pp. 216-223.

A. Maezawa, S. Muramatsu, S. Uchida, and S. Okamura, (1993). “Measurement of Gas Hold-Up In Three-Phase System By Ultrasonic Technique,” Chem. Eng.Technol., vol. 16, pp. 260–262.

A. Martínez Olmos, G. Botella, E. Castillo, D. P. Morales, J. Banqueri, and A. García, (2012). “A reconstruction method for electrical capacitance tomography based on image fusion techniques,” Digital Signal Processing, vol. 22, pp. 885-893,.

A. Shafquet, I. Ismail, and A. Jaafar. (2014). “Modeling and simulation of multi-plane Electrical Capacitance Tomography sensor for flow imaging by using Finite Element Analysis,” in Intelligent and Advanced Systems (ICIAS), 2014 5th International Conference on, 2014, pp. 1-6.

A. Shafquet, I. Ismail, and A. Jaafar. (2014). “Modeling and simulation of multi-plane Electrical Capacitance Tomography sensor for flow imaging by using Finite Element Analysis,” in Intelligent and Advanced Systems (ICIAS), 2014 5th International Conference on, pp. 1-6.

A. Shafquet, I. Ismail, and M. N. Karsiti. (2010). “Study of bubble flow in an air-water two-phase flow by using Electrical Capacitance Tomography,” in Intelligent and Advanced Systems (ICIAS), 2010 International Conference on, pp. 1-6.

A. Trabelsi and Y. Savaria. (2013). “A 2D Gaussian smoothing kernel mapped to heterogeneous platforms,” in New Circuits and Systems Conference (NEWCAS), 2013 IEEE 11th International, pp. 1-4.

B. a. Williams. (1996). “Process tomography: a European innovation and its applications,” Meas. Sci. Technol., vol. 7, pp. 215-224.

B. Girod. “What’s wrong with mean-squared error,” in Digital Images and Human Vision, 1993, pp. 207–220.

B. T. Hjertaker, S.-A. Tjugum, E. A. Hammer, and G. A. Johansen. (2005). “Multimodality tomography for multiphase hydrocarbon flow measurements,” IEEE sensors journal, vol. 5, pp. 153-160.

B. Vinoth, H.-Y. Tu, H.-C. Haung, and C.-J. Cheng. (2020). “All-optical dual-tomography for free-floating live cell imaging and analysis,” in Digital Holography and Three-Dimensional Imaging, p. HF1G. 3.

B. W. van Oudheusden. (1996). “Imaging industrial flow: Applications of electrical process tomography : by A. Plaskowski, M.S. Beck, R. Thorn and T. Dyakowski, published by Institute of Physics, Bristol, UK, 1995, 214 pp., ISBN 0 7503 0296 8, Bristol, UK,” Sensors and Actuators A: Physical, vol. 55, pp. 225-225.

C. G. Xie, M. S. Beck, N. Reinecke, D. Mewes, and R. A. Williams. (1995). “Electrical tomography techniques for process engineering applications,” The Chemical Engineering Journal and the Biochemical Engineering Journal, vol. 56, pp. 127-133.

C. Qiu, B. S. Hoyle, and F. J. W. Podd. (2007). “Engineering and application of a dual-modality process tomography system,” Flow Measurement and Instrumentation, vol. 18, pp. 247-254.

C. Rautenbach, R. F. Mudde, X. Yang, M. C. Melaaen, and B. M. Halvorsen. (2013). “A comparative study between electrical capacitance tomography and time-resolved X-ray tomography,” Flow Measurement and Instrumentation, vol. 30, pp. 34-44,.

C. Rostamzadeh, H. Dadgostar, and F. Canavero. (2009). “Electrostatic Discharge analysis of Multi Layer Ceramic capacitors,” in Electromagnetic Compatibility, 2009. EMC 2009. IEEE International Symposium on, pp. 35-40.

C. Tan, F. Dong, and M. Wu, (2007). “Identification of gas/liquid twophase flow regime through ERT-based measurement and feature extraction,” Flow Measurement and Instrumentation, vol. 18, pp. 255-261,.

Chinedu Anyaoku, C., et al. (2022). “A novel methodology for measuring batch settling velocities of particles using Electrical Resistance Tomography.” Chemical Engineering Science 250: 117364.

D. G. Hayes, I. A. Gregory, and M. S. Beck. (1995). “Velocity profile measurement in oil/gas flows [using capacitance tomography],” in Innovations in Instrumentation for Electrical Tomography, IEE Colloquium on, pp. 1/1-1/6. D. Hu, Z. Cao, S. Sun, and L. Xu. (2018). “Dual-modality electrical tomography for flame monitoring,” IEEE Sensors Journal, vol. 18, pp. 8847-8854.

D. L. George, J. R. Torczynski, K. A. Shollenberger, T. J. O’Hern, and S. L. Ceccio. (2000). “Quantitative tomographic measurements of opaque multiphase flows.,” Sandia National Laboratories SAND2000-0441.

D.Pacho and G.Davies, (2003). “Detection and monitoring of oil foams using raw capacitance data,” Industrial Engineering Chemical Research, vol. 42, pp. 636-645.

E. J. Mohamad, O. M. F. Marwah, R. A. Rahim, M. H. F. Rahiman, and S. Z. M. Muji. (2011). “Electronic design for portable electrical capacitance sensor: A multiphase flow measurement,” in Mechatronics (ICOM), 2011 4th International Conference On, pp. 1-8.

E. J. Mohamad, R. A. Rahim, L. Leow Pei, M. H. F. Rahiman, O. M. Faizan Bin Marwah, and N. M. N. Ayob. (2012). “Segmented Capacitance Tomography Electrodes: A Design and Experimental Verifications,” Sensors Journal, IEEE, vol. 12, pp. 1589-1598.

E. J. Mohamad, R. A. Rahim, P. L. Leow, M. H. Fazalul Rahiman, O. M. F. Marwah, N. M. Nor Ayob, et al. (2012). “An introduction of two differential excitation potentials technique in electrical capacitance tomography,” Sensors and Actuators A: Physical, vol. 180, pp. 1-10.

E. J. Mohamad, R. A. Rahim, P. L. Leow, M. H. Fazalul Rahiman, O. M. F. Marwah, N. M. Nor Ayob, et al. (2012). “An introduction of two differential excitation potentials technique in electrical capacitance tomography,” Sensors and Actuators A: Physical, vol. 180, pp. 1-10.

E. N. d. Santos, T. P. Vendruscol, R. E. M. Moralesb, and M. J. D. Silva. (2013). “Data fusion for dual-modality wire-mesh sensor,” presented at the 7th World Congress on Industrial Process Tomography.

E. S. Gedraite and M. Hadad. (2011). “Investigation on the effect of a Gaussian Blur in image filtering and segmentation,” in ELMAR, 2011 Proceedings, pp. 393-396.

F. J. Dickin, B. S. Hoyle, A. Hunt, S. M. Huang, O. Ilyas, C. Lenn, et al. (1992). “Tomographic imaging of industrial process equipment: techniques and applications,” Circuits, Devices and Systems, IEE Proceedings G, vol. 139, pp. 72-82.

F. R. M. Yunus, R. A. Rahim, S. R. Aw, N. M. N. Ayob, C. L. Goh, and M. J. Pusppanathan. (2014). “Simulation study of electrode size in air-bubble detection for dual-mode integrated electrical resistance and ultrasonic transmission tomography,” Powder Technology, vol. 256, pp. 224-232.

F. Ricard, C. Brechtelsbauer, X. Y. Xu, and C. J. Lawrence, (2005). “Monitoring of Multiphase Pharmaceutical Processes Using Electrical Resistance Tomography,” Chemical Engineering Research and Design, vol. 83, pp. 794-805.

G. A. Johansen, T. Froystein, B. T. Hjertaker, and O. Olsen, (1996). “A dual sensor low imaging tomographic system,” Measurement Science and Technology, pp. 297-307.

G. E. Fasching and N. S. Smith, (1991). “A capacitive system for 3-dimensional imaging of fluidized-beds,” Review of Scientific Instruments, vol. 62, pp. 2243–2251.

G. Steiner, (2006). “Sequential Fusion Of Ultrasound And Electrical Capacitance Tomography,” International Journal Of Information And Systems Sciences, vol. 2, pp. 487-497.

G. Steiner, M. Soleimani, and D. Watzenig, (2008). “ A bio-electromechanical imaging technique with combined electrical impedance and ultrasound tomography” Physiological Measurement, vol. 29.

G. Steiner. (2007). “Application and data fusion of different sensor modalities in tomographic imaging,” e & i Elektrotechnik und Informationstechnik, vol. 124, pp. 232-239, 2007/08/01.

G. T. Bolton, C. W. Hooper, R. Mann, and E. H. Stitt, (2004). “Flow distribution and velocity measurement in a radial flow fixed bed reactor using electrical resistance tomography,” Chemical Engineering Science, vol. 59, pp. 1989-1997.

G. Yang and F. Xu. (2011). “Research and analysis of Image edge detection algorithm Based on the MATLAB,” Procedia Engineering, vol. 15, pp. 1313-1318.

H. Dehghani, M. E. Eames, P. K. Yalavarthy, S. C. Davis, S. Srinivasan, C. M. Carpenter, et al. (2009). “Near infrared optical tomography using NIRFAST: Algorithm for numerical model and image reconstruction,” Communications in Numerical Methods in Engineering, vol. 25, pp. 711-732.

H. H. Ji, Zhiyao; Wang, Baoliang; Li, Haiqingazz. (2003). “Soft-sensing system of gas-solid fluidized bed,” in Proceedings of IEEE Sensors, pp. 1231-1234.

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Published

1 November 2022

Details about this monograph

ISBN-13 (15)

978-967-0061-43-6

How to Cite

Jaysuman Pusppanathan, Ruzairi Abdul Rahim, Norhaliza Abdul Wahab, & Elmy Johana Mohamad. (2022). DUAL MODALITY TOMOGRAPHY : Principles, Techniques & Applications. Penerbit UTHM. https://penerbit.uthm.edu.my/omp/index.php/penerbituthm/catalog/book/337