4.6 Article

Reliability analysis of arresting hook engaging arresting cable for carrier-based aircraft influenced by multifactors

Journal

CHINESE JOURNAL OF AERONAUTICS
Volume 36, Issue 1, Pages 311-323

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.cja.2022.01.001

Keywords

Arresting cable; Arresting devices; Dynamics; Reliability; Support Vector Machines

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This paper presents some studies on the complex and nonlinear carrier-based aircraft landing and arrest process, including the coupling effect between the aircraft and arresting system. A dynamic model of the landing and arrest cable was established and verified using laboratory test results. The key parameters affecting the collision rebound performance of the arresting hook were analyzed, and a surrogate model of the reliability of the arresting hook was established using the Support Vector Machine method. The reliability analysis was carried out using the Monte Carlo method, and meaningful conclusions were obtained.
The carrier-based aircraft landing and arrest process is complex and nonlinear, and includes the coupling effect between the aircraft and arresting system. It has many uncertain factors, which lead to difficulty in the reliability analysis. To make the reliability analysis more accurate and effective, this paper presents some studies. Taking a certain type of carrier-based aircraft as the research object, a dynamic model of the landing and arrest cable was established, and the accuracy of the model was verified using laboratory test results. Based on the model, this paper shows how the key parameters, including the sinking velocity, pitch angle and horizontal velocity, affect the collision rebound performance of the arresting hook. After that, a limit state equation of the arresting hook system's reliability was established. For the implicit limit state equation, a surrogate model of the reliability of the arresting hook was established using the Support Vector Machine (SVM) method, and then reliability analysis was carried out using the Monte Carlo method. Finally, it was explained in detail how the key parameters affect the reliability of the hook engaging the arresting cable, and some meaningful conclusions were obtained. This analysis method and its results can provide a reference for the top-level parameter design of carrier-based aircraft and reliability research on the arresting systems. (c) 2022 Chinese Society of Aeronautics and Astronautics. Production and hosting by Elsevier Ltd. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).

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