DocumentCode
2755653
Title
Optimization of X-ray parameters in radiography nondestructive evaluation
Author
Elshafiey, Ibrahim ; Gray, Joseph N.
Author_Institution
Coll. of Eng., Cairo Univ., Fayoum, Egypt
fYear
1999
fDate
23-25 Feb 1999
Abstract
A new tool is being developed which automates the optimization process of X-ray NDE. The tool incorporates an adaptive simulated annealing model for exploring the large dimensional parameter space and determining the globally optimum state. The problem is cast in the form of minimizing a cost function, defined in terms of film density contrast values corresponding to a specified set of flaws in the object. The XRSIM model is invoked to calculate film contrast values. The object flaw set can be determined using finite element analysis techniques, if the object loading is known. The centers of the flaw set are chosen to coincide with the centers of elements with highest stress values. A probability of detection (POD) model is used to test the obtained optimization values. If POD values are found to be unsatisfactory, the optimization process proceeds to obtain, two, or more, parameter sets, which can be used for an optimal inspection of the object
Keywords
finite element analysis; flaw detection; radiography; simulated annealing; X-ray parameters; adaptive simulated annealing model; cost function; film contrast values; film density contrast values; finite element analysis techniques; globally optimum state; large dimensional parameter space; object flaw set; object loading; optimal inspection; optimization process; probability of detection; radiography nondestructive evaluation; Computational modeling; Computer simulation; Cost function; Detectors; Educational institutions; Inspection; Nondestructive testing; Object detection; Radiography; Simulated annealing;
fLanguage
English
Publisher
ieee
Conference_Titel
Radio Science Conference, 1999. NRSC '99. Proceedings of the Sixteenth National
Conference_Location
Cairo
Print_ISBN
977-5031-62-1
Type
conf
DOI
10.1109/NRSC.1999.760957
Filename
760957
Link To Document