Uncertainty Quantification of Imperfect Diagnostics

Author:

Ulansky Vladimir1ORCID,Raza Ahmed2ORCID

Affiliation:

1. Department of Electronics, Robotics, Monitoring and IoT Technologies, National Aviation University, 03058 Kyiv, Ukraine

2. PDP Engineering Section, The Private Department of the President of the United Arab Emirates, Abu Dhabi 000372, United Arab Emirates

Abstract

The operable state of a system is maintained during operation, which requires knowledge of the system’s state. Technical diagnostics, as a process of accurately obtaining information about the system state, becomes a crucial stage in the life cycle of any system. The study deals with the relevant problem of uncertainty quantification of imperfect diagnostics. We considered the most general case when the object of diagnostics, the diagnostic tool, and the human operator can each be in one of the many states. The concept of a diagnostic error is introduced, in which the object of diagnostics is in one of many states but is erroneously identified as being in any other state. We derived the generalized formulas for the probability of a diagnostic error, the probability of correct diagnosis, and the total probability of a diagnostic error. The proposed generalized formulas make it possible to determine the probabilistic indicators of diagnosis uncertainty for any structures of diagnostics systems and any types of failures of the diagnostic tool and human operator. We demonstrated the theoretical material by computing the probabilistic indicators of diagnosis uncertainty for an aircraft VHF communication system and fatigue cracks in the aircraft wings.

Publisher

MDPI AG

Subject

Aerospace Engineering

Reference37 articles.

1. Optimization of maintenance task interval of aircraft systems;Okoro;Int. J. Comput. Netw. Inf. Secur.,2022

2. Raza, A., and Ulansky, V. (2021). Through-life maintenance cost of digital avionics. Appl. Sci., 11.

3. Raza, A. (2018). Maintenance model of digital avionics. Aerospace, 5.

4. Human errors in emergency situations: Cognitive analysis of the behavior of the pilots in the Air France 447 flight disaster;Rocha;Gestão Produção,2018

5. Borodachev, I.A. (1959). The Main Issues of the Theory of Production Accuracy, USSR Academy of Sciences Publishing House.

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