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Magnetic Induction Tomography: Receiver Circuit and Its Design Criteria
Author(s) -
Zulkarnay Zakaria,
Muhammad Saiful Badri Mansor,
Ruzairi Abdul Rahim,
Ibrahim Balkhis,
Mohd Hafiz Fazalul Rahiman,
Nor Muzakkir Nor Ayob,
Herlina Abdul Rahim,
Sazali Yaacob
Publication year - 2013
Publication title -
jurnal teknologi
Language(s) - English
Resource type - Journals
eISSN - 2180-3722
pISSN - 0127-9696
DOI - 10.11113/jt.v64.2138
Subject(s) - computer science , transmitter , component (thermodynamics) , projection (relational algebra) , electromagnetic coil , object (grammar) , electromagnetic induction , selection (genetic algorithm) , frame rate , quality (philosophy) , iterative reconstruction , image quality , tomography , frame (networking) , computer vision , artificial intelligence , electronic engineering , image (mathematics) , algorithm , engineering , electrical engineering , telecommunications , physics , optics , channel (broadcasting) , quantum mechanics , thermodynamics
This paper discusses the receiver circuit and criteria for component selection towards the application of a real-time magnetic induction tomography system. Component selection plays an important role since image reconstruction of the object of interest with high quality and at a higher frame rate cannot be achieved without the right parameter criteria. The demands for a high quality imaging system have recently been increasing, especially in industrial processes involving dynamic movement, thus this paper may provide valuable information on better magnetic induction tomography system implementation for industrial processes and biomedical imaging through the use of a coil as a transmitter and also a receiver. The linear back projection algorithm has been employed in this system and has proven capable of identifying the location and size of the object based on the reconstructed images.

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