Real-time imaging is a either a mandatory or an attractive feature in practical applications of Nondestructive Evaluation of structures and materials. To date, real-time imaging in commercial systems is achieved only by means of calibration charts or pre-computed databases containing the 'signatures' corresponding to a finite number of defect configurations and inspection parameters. Situations beyond these sets of signatures cannot be treated and may cause misinterpretations of the data. This paper is a review on the electromagnetic imaging of defects in conducting materials by Noniterative Imaging methods. The class of Noniterative Imaging methods has attracted considerable interest because is suitable for real-time imaging. The paper discuss in detail the Monotonicity Imaging Method (MIMe), that is a specific Noiterative Imaging method successfully applied in Electrical Resistance Tomography and Eddy Current Tomography.
Noniterative Methods for Real Time Imaging of Conducting Materials / A., Tamburrino; Rubinacci, Guglielmo; S., Ventre. - 38:(2014), pp. 74-82. [10.3233/978-1-61499-354-4-74]
Noniterative Methods for Real Time Imaging of Conducting Materials
RUBINACCI, GUGLIELMO;
2014
Abstract
Real-time imaging is a either a mandatory or an attractive feature in practical applications of Nondestructive Evaluation of structures and materials. To date, real-time imaging in commercial systems is achieved only by means of calibration charts or pre-computed databases containing the 'signatures' corresponding to a finite number of defect configurations and inspection parameters. Situations beyond these sets of signatures cannot be treated and may cause misinterpretations of the data. This paper is a review on the electromagnetic imaging of defects in conducting materials by Noniterative Imaging methods. The class of Noniterative Imaging methods has attracted considerable interest because is suitable for real-time imaging. The paper discuss in detail the Monotonicity Imaging Method (MIMe), that is a specific Noiterative Imaging method successfully applied in Electrical Resistance Tomography and Eddy Current Tomography.I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.


