TY - JOUR
T1 - Magnetic field imaging by ct technique
AU - Saito, Hideo
AU - Kusaba, Ritsu
AU - Nakajima, Masato
AU - Yuta, Shin'ichi
N1 - Copyright:
Copyright 2015 Elsevier B.V., All rights reserved.
PY - 1987/9
Y1 - 1987/9
N2 - In this paper, we propose a method for measuring the magnetic field as a 2-D tomographic image, applying an algorithm of CT to the electromagnetic induction phenomenon, and also show some experimental results to demonstrate the efficacy. When a line conductor moves relatively to a field of magnetic flux density, the voltage is induced between both ends of the line conductor. The measurement of the voltage during the field movement provides a projection data of the flux density distribution in the plane where the line conductor passed. Collecting this projection data at every angle, and applying the CT algorithm to them, the flux density distribution can be reconstructed in a 2-D tomographic image. We performed imaging experiments of a magnetic flux density distribution produced by a U-sbaped permanent magnet and succeeded in getting high quality reconstructed images.
AB - In this paper, we propose a method for measuring the magnetic field as a 2-D tomographic image, applying an algorithm of CT to the electromagnetic induction phenomenon, and also show some experimental results to demonstrate the efficacy. When a line conductor moves relatively to a field of magnetic flux density, the voltage is induced between both ends of the line conductor. The measurement of the voltage during the field movement provides a projection data of the flux density distribution in the plane where the line conductor passed. Collecting this projection data at every angle, and applying the CT algorithm to them, the flux density distribution can be reconstructed in a 2-D tomographic image. We performed imaging experiments of a magnetic flux density distribution produced by a U-sbaped permanent magnet and succeeded in getting high quality reconstructed images.
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U2 - 10.1109/TMAG.1987.1065689
DO - 10.1109/TMAG.1987.1065689
M3 - Article
AN - SCOPUS:0023418254
SN - 0018-9464
VL - 23
SP - 2587
EP - 2589
JO - IEEE Transactions on Magnetics
JF - IEEE Transactions on Magnetics
IS - 5
ER -