Publisher URL: http://www.fzt.haw-hamburg.de/pers/Scholz/PAHMIR/GERDES-2017_DecisionTreesForA320AirConditioning_J-NDT-CM.pdf
http://PAHMIR.ProfScholz.de
Publisher DOI: 10.1784/insi.2017.59.8.424
Title: Genetic Algorithms and Decision Trees for Condition Monitoring and Prognosis of A320 Aircraft Air Conditioning
Language: English
Authors: Gerdes, Mike 
Galar, Diego 
Scholz, Dieter  
Issue Date: Aug-2017
Publisher: The British Institute of Non-Destructive Testing
Journal or Series Name: Insight : non-destructive testing and condition monitoring ; the journal of the British Institute of Non-Destructive Testing 
Volume: 59
Issue: 8
Startpage: 424
Endpage: 433
Abstract: 
Unscheduled maintenance is a large cost driver for airlines, but condition monitoring and prognosis can reduce the number of unscheduled maintenance actions. The paper shows condition monitoring can be introduced into most system by adopting a data-driven approach and using existing data sources. The goal is to forecast the remaining useful life (RUL) of a system based on various sensor inputs. We use decision trees to learn the characteristics of a system. The data for the decision tree training and classification are processed by a generic parametric signal analysis. To obtain the best classification results for the decision tree, the parameters are optimized by a genetic algorithm. A forest of three different decision trees with different signal analysis parameters is used as classifier. The proposed method is validated with data from an A320 aircraft from ETIHAD Airways. Validation shows condition monitoring can classify the sample data into ten predetermined categories, representing the total useful life (TUL) in 10 percent steps. This is used to predict the RUL. There are 350 false classifications out of 850 samples. Noise reduction reduces the outliers to nearly zero, making it possible to correctly predict condition. It is also possible to use the classification output to detect a maintenance action in the validation data.
URI: http://hdl.handle.net/20.500.12738/1516
ISSN: 1354-2575
Institute: Department Fahrzeugtechnik und Flugzeugbau 
Fakultät Technik und Informatik 
Forschungsgruppe Flugzeugentwurf und -systeme (AERO) 
Type: Article
Appears in Collections:Publications without full text

Show full item record

Page view(s)

93
checked on Dec 25, 2024

Google ScholarTM

Check

HAW Katalog

Check

Add Files to Item

Note about this record


Items in REPOSIT are protected by copyright, with all rights reserved, unless otherwise indicated.