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NASA NTRS · 19900053495

Rocket engine diagnostics using neural networks

Abstract

Two problems in applying neural networks to fault detection and identification are (1) the complexity of the sensor data to fault mapping and (2) the lack of sufficient training data. Here, methods are derived and tested in an architecture which addresses these two problems. First, the sensor data to fault mapping is decomposed into three simpler mappings which perform sensor data compression, hypothesis generation, and sensor fusion. Efficient training is performed for each mapping separately. Second, the neural network which performs sensor fusion is structured to detect new unknown faults for which training examples were not presented. These methods were tested on a task of fault detection and identification in the Space Shuttle Main Engine (SSME). Results indicate that the decomposed neural network architecture can be trained efficiently, can identify faults for which it has been trained, and can detect the occurrence of faults for which it has not been trained.

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BibTeXRIS

Whitehead, Bruce A., Kiech, Earl L., Ali, Moonis. 1990-07-01. Rocket engine diagnostics using neural networks. https://ntrs.nasa.gov/citations/19900053495

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