Front-end design for non-invasive electrical resistance tomography for liquid column

This paper explains the front-end design for noninvasive electrical resistance tomography. The electrical resistance tomography system presented in this paper uses high-frequency potential. In this design, the phase-shift demodulation (PSD) approach was eliminated and replaced by a peak detector cir...

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Main Authors: Abdul Wahab, Yasmin, Abdul Rahim, Ruzairi, Zawawi, Mohd. Anwar, Rahiman, Mohd. Hafiz Fazalul, Leow, Pei Ling, Jamaluddin, Juliza, Goh, Helen, Ridzuan Aw, Suzanna, Abdul Rahim, Herlina
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Published: Universiti Teknikal Malaysia Melaka 2018
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Online Access:http://eprints.utm.my/id/eprint/85757/
https://journal.utem.edu.my/index.php/jtec/article/view/3321
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Institution: Universiti Teknologi Malaysia
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spelling my.utm.857572020-07-28T02:45:18Z http://eprints.utm.my/id/eprint/85757/ Front-end design for non-invasive electrical resistance tomography for liquid column Abdul Wahab, Yasmin Abdul Rahim, Ruzairi Zawawi, Mohd. Anwar Rahiman, Mohd. Hafiz Fazalul Leow, Pei Ling Jamaluddin, Juliza Goh, Helen Ridzuan Aw, Suzanna Abdul Rahim, Herlina TK Electrical engineering. Electronics Nuclear engineering This paper explains the front-end design for noninvasive electrical resistance tomography. The electrical resistance tomography system presented in this paper uses high-frequency potential. In this design, the phase-shift demodulation (PSD) approach was eliminated and replaced by a peak detector circuit. The switching between transmitter/receiver and the transmitting channel was controlled by an analogue switch, MAX319 and demultiplexer, DG406, respectively. A microcontroller was applied to the data acquisition which eliminates the needs of a data acquisition system. Sensor readings of each receiver from each transmitter groups were tested experimentally, compared and analysed with simulation results. These experimental readings were compared with the sensors reading simulated from COMSOL Multiphysics software. As a result, the current values between 0-1mA from experiments was similar with the simulation results for all groups of transmitters. Thus, it can be concluded that the front-end design can be applied for the non-invasive ERT when high frequency is considered. Universiti Teknikal Malaysia Melaka 2018 Article PeerReviewed Abdul Wahab, Yasmin and Abdul Rahim, Ruzairi and Zawawi, Mohd. Anwar and Rahiman, Mohd. Hafiz Fazalul and Leow, Pei Ling and Jamaluddin, Juliza and Goh, Helen and Ridzuan Aw, Suzanna and Abdul Rahim, Herlina (2018) Front-end design for non-invasive electrical resistance tomography for liquid column. Journal of Telecommunication, Electronic and Computer Engineering, 10 (1-2). pp. 55-60. ISSN 2180-1843 https://journal.utem.edu.my/index.php/jtec/article/view/3321
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TK Electrical engineering. Electronics Nuclear engineering
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Abdul Wahab, Yasmin
Abdul Rahim, Ruzairi
Zawawi, Mohd. Anwar
Rahiman, Mohd. Hafiz Fazalul
Leow, Pei Ling
Jamaluddin, Juliza
Goh, Helen
Ridzuan Aw, Suzanna
Abdul Rahim, Herlina
Front-end design for non-invasive electrical resistance tomography for liquid column
description This paper explains the front-end design for noninvasive electrical resistance tomography. The electrical resistance tomography system presented in this paper uses high-frequency potential. In this design, the phase-shift demodulation (PSD) approach was eliminated and replaced by a peak detector circuit. The switching between transmitter/receiver and the transmitting channel was controlled by an analogue switch, MAX319 and demultiplexer, DG406, respectively. A microcontroller was applied to the data acquisition which eliminates the needs of a data acquisition system. Sensor readings of each receiver from each transmitter groups were tested experimentally, compared and analysed with simulation results. These experimental readings were compared with the sensors reading simulated from COMSOL Multiphysics software. As a result, the current values between 0-1mA from experiments was similar with the simulation results for all groups of transmitters. Thus, it can be concluded that the front-end design can be applied for the non-invasive ERT when high frequency is considered.
format Article
author Abdul Wahab, Yasmin
Abdul Rahim, Ruzairi
Zawawi, Mohd. Anwar
Rahiman, Mohd. Hafiz Fazalul
Leow, Pei Ling
Jamaluddin, Juliza
Goh, Helen
Ridzuan Aw, Suzanna
Abdul Rahim, Herlina
author_facet Abdul Wahab, Yasmin
Abdul Rahim, Ruzairi
Zawawi, Mohd. Anwar
Rahiman, Mohd. Hafiz Fazalul
Leow, Pei Ling
Jamaluddin, Juliza
Goh, Helen
Ridzuan Aw, Suzanna
Abdul Rahim, Herlina
author_sort Abdul Wahab, Yasmin
title Front-end design for non-invasive electrical resistance tomography for liquid column
title_short Front-end design for non-invasive electrical resistance tomography for liquid column
title_full Front-end design for non-invasive electrical resistance tomography for liquid column
title_fullStr Front-end design for non-invasive electrical resistance tomography for liquid column
title_full_unstemmed Front-end design for non-invasive electrical resistance tomography for liquid column
title_sort front-end design for non-invasive electrical resistance tomography for liquid column
publisher Universiti Teknikal Malaysia Melaka
publishDate 2018
url http://eprints.utm.my/id/eprint/85757/
https://journal.utem.edu.my/index.php/jtec/article/view/3321
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