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Magnetostatic Modelling of Thin Layers Using the Method of Moments And Its Implementation in OCTAVE/MATLAB / / by Roman Szewczyk



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Autore: Szewczyk Roman Visualizza persona
Titolo: Magnetostatic Modelling of Thin Layers Using the Method of Moments And Its Implementation in OCTAVE/MATLAB / / by Roman Szewczyk Visualizza cluster
Pubblicazione: Cham : , : Springer International Publishing : , : Imprint : Springer, , 2018
Edizione: 1st ed. 2018.
Descrizione fisica: 1 online resource (114 pages)
Disciplina: 538.3
Soggetto topico: Electronics
Microelectronics
Engineering—Materials
Materials—Surfaces
Thin films
Condensed matter
Electronics and Microelectronics, Instrumentation
Materials Engineering
Surfaces and Interfaces, Thin Films
Condensed Matter Physics
Nota di contenuto: Introduction -- Magnetic materials and magnetization process -- Thin-layer based devices -- Magnetostatic modelling -- Analysis of 1D, 2D and 3D systems using the method of moments -- Practical examples -- Final remarks and conclusions.
Sommario/riassunto: This book presents an efficient and robust method of modelling the magnetostatic properties of different technical elements, especially thin layers for magnetic sensors. The solutions presented utilise the principles of the method of moments. However, the principles have been developed both from the point of view of physical analyses as well as from the point of view of numerical optimisation. To enable cost-efficient use of the solutions for commercial applications in industry, the proposed method was implemented as a code optimised for use in the open-source OCTAVE environment. The scripts can be also used with MATLAB software, which is more user friendly, especially for less experienced users.
Titolo autorizzato: Magnetostatic Modelling of Thin Layers Using the Method of Moments And Its Implementation in OCTAVE  Visualizza cluster
ISBN: 3-319-77985-0
Formato: Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione: Inglese
Record Nr.: 9910299938603321
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Serie: Lecture Notes in Electrical Engineering, . 1876-1100 ; ; 491