DocumentCode :
3230346
Title :
An ANS based helicopter transmission diagnostic system
Author :
Xu, Xiaoshu ; Vanderveldt, Hans ; Allen, Robert
Author_Institution :
American Joining Inst., Knoxville, TN, USA
Volume :
4
fYear :
1997
fDate :
9-12 Jun 1997
Firstpage :
2434
Abstract :
From the development effort for the CH-46 Helicopter Aft Transmission Fault Detector project the following can be concluded. The optimized-entropy training algorithm, successfully configured and optimized an ANS for processing vibration signals, albeit test signals from a test stand transmission with implanted faults. The ANS successfully analyzed the test data with, no false alarms, no failures to detect, and no misclassifications of original test data. Additionally, no false alarms, and no failures to detect and a very small percentage of misclassification rates (0.16%) on an expanded test data set. It is worth noting that diagnostic systems in use today are reported to have false alarms rates as high as 40 percent. The total detection time needed for classification to occur per instant is less than 0.002 seconds. When combining each instant with others into a time buffer the final classification always takes less than 1 second. The development of an ANS for use as a helicopter transmission fault detector diagnostic system is both feasible and has a high probability of success
Keywords :
fault diagnosis; helicopters; learning (artificial intelligence); neural nets; pattern classification; time series; CH-46 Helicopter Aft Transmission Fault Detector project; classification; detection time; helicopter transmission fault detector diagnostic system; optimized-entropy training algorithm; vibration signals; Accelerometers; Acoustic noise; Acoustic sensors; Artificial neural networks; Costs; Fault detection; Fault diagnosis; Helicopters; Sensor systems; Testing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Neural Networks,1997., International Conference on
Conference_Location :
Houston, TX
Print_ISBN :
0-7803-4122-8
Type :
conf
DOI :
10.1109/ICNN.1997.614461
Filename :
614461
Link To Document :
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