Aircraft system-level diagnosis with emphasis on maintenance decisions

Author:

Skliros Christos1ORCID,Ali Fakhre1,King Steve1ORCID,Jennions Ian1

Affiliation:

1. Integrated Vehicle Health Management Centre, School of Aerospace, Transport and Manufacturing, Cranfield University, Bedfordshire, UK

Abstract

This paper proposes a diagnostic technique that can predict component degradation for a number of complex systems. It improves and clarifies the capabilities of a previously proposed diagnostic approach, by identifying the degradation severity of the examined components, and uses a 3D Principal Component Analysis approach to provide an explanation for the observed diagnostic accuracy. The diagnostic results are then used, in a systematic way, to influence maintenance decisions. Having been developed for the Auxiliary Power Unit (APU), the flexibility and power of the diagnostic methodology is shown by applying it to a completely new system, the Environmental Control System (ECS). A major conclusion of this work is that the proposed diagnostic approach is able to correctly predict the health state of two aircraft systems, and potentially many more, even in cases where different fault combinations result in similar fault patterns. Based on the engineering simulation approach verified here, a diagnostic methodology suitable from aircraft conception to retirement is proposed.

Funder

The Boeing Company

Publisher

SAGE Publications

Subject

Safety, Risk, Reliability and Quality

Reference40 articles.

1. Saxon S, Weber M. A better approach to airline costs. In: McKinsey & company travel, transport & logistics. McKinsey & Company, https://www.mckinsey.com/industries/travel-transport-and-logistics/our-insights/a-better-approach-to-airline-costs (2017, accessed 10 September 2020).

2. International Air Transport Association. Preliminary analysis of MCTF FY2017 data. In: 14th maintenance cost conference, 2018, https://www.iata.org/contentassets/f03b1a4b79534b99802f10cd23b19ec2/1000-1030-prelim-analysis-of-mctf-data-iata.pdf

3. Integrated Vehicle Health Management: Perspectives on an Emerging Field

4. Study on maintenance contribution to Life Cycle Costs: Aircraft Auxiliary Power Unit example

5. Analysis of aircraft maintenance processes and cost

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