A Data Filter for Identifying Steady-State Operating Points in Engine Flight Data for Condition Monitoring Applications
Author(s) -
Donald L. Simon,
Jonathan S. Litt
Publication year - 2011
Publication title -
journal of engineering for gas turbines and power
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.567
H-Index - 84
eISSN - 1528-8919
pISSN - 0742-4795
DOI - 10.1115/1.4002318
Subject(s) - standard deviation , filter (signal processing) , steady state (chemistry) , outlier , computer science , operating point , data point , data processing , anomaly detection , dynamic data , state (computer science) , control theory (sociology) , engineering , data mining , algorithm , database , electronic engineering , mathematics , statistics , artificial intelligence , computer vision , chemistry , control (management)
This paper presents an algorithm that automatically identifies and extracts steady-state engine operating points from engine flight data. It calculates the mean and standard deviation of select parameters contained in the incoming flight data stream. If the standard deviation of the data falls below defined constraints, the engine is assumed to be at a steady-state operating point, and the mean measurement data at that point are archived for subsequent condition monitoring purposes. The fundamental design of the steady-state data filter is completely generic and applicable for any dynamic system. Additional domain-specific logic constraints are applied to reduce data outliers and variance within the collected steady-state data. The filter is designed for on-line real-time processing of streaming data as opposed to post-processing of the data in batch mode. Results of applying the steady-state data filter to recorded helicopter engine flight data are shown, demonstrating its utility for engine condition monitoring applications.
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