Please use this identifier to cite or link to this item: https://er.chdtu.edu.ua/handle/ChSTU/4472
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dc.contributor.authorHalchenko, Volodymyr-
dc.contributor.authorTrembovetska, Ruslana-
dc.contributor.authorBazilo, Constantine-
dc.contributor.authorTychkova, Natalіia-
dc.contributor.authorГальченко, Володимир Якович-
dc.contributor.authorТрембовецька, Руслана Володимирівна-
dc.contributor.authorБазіло, Костянтин Вікторович-
dc.contributor.authorТичкова, Наталія Борисівна-
dc.date.accessioned2023-07-24T11:59:08Z-
dc.date.available2023-07-24T11:59:08Z-
dc.date.issued2023-
dc.identifier.isbn978-3-031-35467-0 (online)-
dc.identifier.isbn978-3-031-35466-3 (print)-
dc.identifier.issn2367-4512 (print)-
dc.identifier.issn2367-4520 (online)-
dc.identifier.urihttps://er.chdtu.edu.ua/handle/ChSTU/4472-
dc.identifier.urihttps://link.springer.com/chapter/10.1007/978-3-031-35467-0_25-
dc.description.abstractThe created computer model of the process of measuring continuously changing profiles of electrical conductivity and magnetic permeability in objects with a surface eddy current probe is considered as a tool for developing a computationally efficient metamodel on artificial neural networks, necessary for solving the inverse electrodynamic problem. Also, this computer model is used to simulate the measurement processes in various frequency modes of excitation of eddy currents in magnetic and non-magnetic test objects to study the sensitivity of the method to distinguish a series of slightly different profiles, to determine the optimal frequency ranges that provide the highest possible levels of the output signal of the surface probe. The reliability of the computer model is verified on simple test cases when the near-surface layer is represented by one- and two-layer approximation. It is assumed that in these layers the values of electrical parameters are unchanged. The coincidence with acceptable accuracy of the results of calculations using the created computer model, oriented to a conditionally multilayer representation of test objects, and obtained results for simple cases, for which there are analytical dependences for calculating the output signal of eddy current probes, is shown. As a result of their comparison the adequacy of the created software is proved. A series of model experiments for test objects made of magnetic and non-magnetic materials has been carried out, allowing to make some recommendations regarding the choice of probe’s excitation modes, taking into account the specifics of materials magnetic properties.uk_UA
dc.language.isoenuk_UA
dc.publisherSpringer, Chamuk_UA
dc.subjectreconstruction of electrophysical parametersuk_UA
dc.subjectmetamodeluk_UA
dc.subjectelectrical conductivityuk_UA
dc.subjectmagnetic permeabilityuk_UA
dc.subjectdistinction of profilesuk_UA
dc.titleComputer Simulation of the Process of Profiles Measuring of Objects Electrophysical Parameters by Surface Eddy Current Probesuk_UA
dc.typeBook chapteruk_UA
dc.citation.spage411uk_UA
dc.citation.epage424uk_UA
dc.title.bookInformation Technology for Education, Science, and Technics : Proceedings of ITEST 2022 / editors Emil Faure, Olena Danchenko, Maksym Bondarenko, Yurii Tryus, Constantine Bazilo, Grygoriy Zaspauk_UA
dc.identifier.doi10.1007/978-3-031-35467-0_25-
Appears in Collections:Наукові публікації викладачів (ФЕТР)

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