DocumentCode :
1679744
Title :
Automation of the interpretation of surface response to excitation (SuRE) method by using neural networks
Author :
Fekrmandi, Hadi ; Gonzalez Sebastian Rojas, Rafael ; Tansel, Ibrahim Nur ; Meiller, David ; Lindsay, Kyle
Author_Institution :
MME Dept., Florida Int. Univ., Miami, FL, USA
fYear :
2015
Firstpage :
11
Lastpage :
16
Abstract :
In this study surface response to excitation (SuRE) method with a neural network was used for structural health monitoring of an aluminum beam. SuRE method excited and monitored the elastic guided waves on the structure. The frequency-transfer function was captured over a range of high frequencies (20-200 kHz) using a low cost Digital Signal Processor (DSP) system. For magnitude estimation, the amplitude of the received signal for each frequency value is calculated. With the magnitude estimation, the frequency domain spectrum response is calculated. Using an aluminum plate as the experimental surface, load in different points of the beam were applied and the response signals organized in a database. With the experimental data, a neural network is trained with the Levenberg-Marquardt algorithm and then trained with the scaled conjugated gradient algorithm. The study indicated that the SuRE method may be used as a low cost alternative to detect surface changes.
Keywords :
aluminium; beams (structures); condition monitoring; conjugate gradient methods; digital signal processing chips; elasticity; learning (artificial intelligence); neural nets; plates (structures); structural engineering computing; DSP; Levenberg-Marquardt algorithm; SuRE method; aluminum beam; aluminum plate; digital signal processor; elastic guided wave monitoring; frequency 20 kHz to 200 kHz; frequency domain spectrum response; frequency-transfer function; magnitude estimation; neural network; scaled conjugated gradient algorithm; structural health monitoring; surface response to excitation method; training; Aluminum; Biological neural networks; Frequency measurement; Monitoring; Surface waves; Training; Multi-Dimentional Condition Monitoring; Piezoelecteric Elements; Structural Health Monitoring; Surface Response to Excitation Method;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Recent Advances in Space Technologies (RAST), 2015 7th International Conference on
Conference_Location :
Istanbul
Print_ISBN :
978-1-4673-7760-7
Type :
conf
DOI :
10.1109/RAST.2015.7208307
Filename :
7208307
Link To Document :
بازگشت