An Efficient Numerical Scheme for Sizing of Cavity Defect in Metallic Foam From Signals of DC Potential Drop Method
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سال
: 2014شناسه الکترونیک: 10.1109/TMAG.2013.2283491
کلیدواژه(گان): bubbles,conjugate gradient methods,inverse problems,metal foams,neural nets,nondestructive testing,DC potential drop method signals,bubble defects,cavity defect sizing,conjugate gradient optimization method,database-type fast forward scheme,hybrid inverse strategy,metallic foam structures,multimedium element,neural network,numerical scheme,position parameters,quantitative nondestructive testing,signal simulation,Artificial neural networks,Cavity resonators,Databases,Inverse
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An Efficient Numerical Scheme for Sizing of Cavity Defect in Metallic Foam From Signals of DC Potential Drop Method
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contributor author | Xiaojuan Wang | |
contributor author | Shejuan Xie | |
contributor author | Zhenmao Chen | |
date accessioned | 2020-03-12T23:49:09Z | |
date available | 2020-03-12T23:49:09Z | |
date issued | 2014 | |
identifier issn | 0018-9464 | |
identifier other | 6749190.pdf | |
identifier uri | https://libsearch.um.ac.ir:443/fum/handle/fum/1124446 | |
format | general | |
language | English | |
publisher | IEEE | |
title | An Efficient Numerical Scheme for Sizing of Cavity Defect in Metallic Foam From Signals of DC Potential Drop Method | |
type | Journal Paper | |
contenttype | Metadata Only | |
identifier padid | 8303986 | |
subject keywords | bubbles | |
subject keywords | conjugate gradient methods | |
subject keywords | inverse problems | |
subject keywords | metal foams | |
subject keywords | neural nets | |
subject keywords | nondestructive testing | |
subject keywords | DC potential drop method signals | |
subject keywords | bubble defects | |
subject keywords | cavity defect sizing | |
subject keywords | conjugate gradient optimization method | |
subject keywords | database-type fast forward scheme | |
subject keywords | hybrid inverse strategy | |
subject keywords | metallic foam structures | |
subject keywords | multimedium element | |
subject keywords | neural network | |
subject keywords | numerical scheme | |
subject keywords | position parameters | |
subject keywords | quantitative nondestructive testing | |
subject keywords | signal simulation | |
subject keywords | Artificial neural networks | |
subject keywords | Cavity resonators | |
subject keywords | Databases | |
subject keywords | Inverse | |
identifier doi | 10.1109/TMAG.2013.2283491 | |
journal title | Magnetics, IEEE Transactions on | |
journal volume | 50 | |
journal issue | 2 | |
filesize | 530741 | |
citations | 0 |