Reliability Evaluation Based on the Colored Petri Net Converted from AADL Models for the Wheel Brake System of Aircraft

Author:

Huang Mingyuan1,Cheng Dawei2,Zhou Jia3,Lu Zhong2ORCID

Affiliation:

1. Mechanical System Office, Shanghai Aircraft Airworthiness Certification Center of CAAC, Shanghai 200232, China

2. College of Civil Aviation, Nanjing University of Aeronautics and Astronautics, Nanjing 211106, China

3. Production and Technic Department, Eastern Airlines Technic Co., Ltd., Jiangsu Branch, Nanjing 211114, China

Abstract

Traditional reliability analysis methods such as Reliability Block Diagram, Fault Tree Analysis, and Markov Analysis are all subjective methods whose results significantly depend on the analysts’ skills and experiences. A model-based reliability method is proposed for the wheel brake system by using the architectural analysis and design language (AADL). The wheel brake system is modeled based on the AADL, and the AADL Error Model Annex is applied to describe the fault propagation of the system. An information extraction approach is proposed for the AADL-based model, and rules for transforming AADL-based models to colored Petri nets are given according to the information extracted. The reliability analysis of the wheel brake system is conducted in terms of the Colored Petri Nets. Through Monte Carlo simulation and linear regression, it is inferred that the lifetime of the wheel brake system follows a Weibull distribution with shape parameter 1.303 and scale parameter 9.992 × 103, and the accuracy of the method has been verified. In this study, the reliability analysis results are generated via the system model automatically; they do not depend on the analysts’ experiences and skills, and ambiguity among different analysts can be avoided.

Funder

National Natural Science Foundation of China

Aeronautical Science Foundation of China

Funds for Civil Aviation Safety Capacity Building

Publisher

MDPI AG

Subject

Aerospace Engineering

Reference30 articles.

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2. Review for model-based reliability analysis of complex reliability-critical system;Chen;Syst. Eng. Electron.,2017

3. (2004). Architecture Analysis and Design Language (AADL) (Standard No. Tech. Rep. AS5506).

4. (2006). Architecture Analysis and Design Language (AADL) Annex Volume (Standard No. Tech. Rep. AS5506/1).

5. Cheng, D.W., Lu, Z., and Yang, Y.P. (2021, January 5–7). Reliability Analysis for Wheel Brake Systems Based on AADL. Proceedings of the 26th ISSAT International Conference on Reliability and Quality in Design, Miami, FL, USA.

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