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Titlebook: Computational Electromagnetics and Model-Based Inversion; A Modern Paradigm fo Harold A Sabbagh,R. Kim Murphy,Jeremy S Knopp Book 2013 Spri

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https://doi.org/10.1007/978-3-322-99747-0re pernicious to the reliable detection and reconstruction of a flaw than random (electronic) noise that can be often eliminated by averaging. Hence, the ability to model clutter and reject it is paramount to the successful application of inverse methods and is the subject of the first part of this chapter.
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Advanced Probe Models Based on Magnetic Dipoles and Ferrite Coreschapter, we develop a theory that allows us to efficiently discretize the current density in such probes, thereby allowing us to use transfer matrices (these will be discussed in Chap. 10) and similar mathematical constructs for solving problems.
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Stephan Gerhard Huber,Anna Zoss, one can generate a two-dimensional “scan” with a suitable array, without moving it. This can be very effective when doing voxel-based inversions, as will be discussed in a later volume of this work.
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Overview of Methods of Computational Electromagnetics upon the specific application), but the technology still suffers from a lack of algorithms and software to allow its full potential to be realized. The electromagnetics code, .., was developed to alleviate that problem, and in this book we apply ..to solve forward and inverse problems in eddy-current NDE.
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