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Article

Research on Fault-Tolerant Control of Combined Airframe Damage of Electric Aircraft

1
Liaoning General Aviation Academy, Shenyang 110136, China
2
Liaoning Key Laboratory of General Aviation, Shenyang Aerospace University, Shenyang 110136, China
3
Shenyang Aircraft Design and Research Institute, Shenyang 110135, China
*
Author to whom correspondence should be addressed.
Aerospace 2023, 10(7), 611; https://doi.org/10.3390/aerospace10070611
Submission received: 21 May 2023 / Revised: 27 June 2023 / Accepted: 30 June 2023 / Published: 2 July 2023
(This article belongs to the Special Issue Advanced Aircraft Technology)

Abstract

General aviation is an important branch of the aviation field. As a green energy aircraft, the electric aircraft is an important component and development direction of general aviation aircraft, and its safety is crucial. In this paper, the aerodynamic and dynamic characteristics of electric aircraft under collision, lightning strikes, and icing conditions are studied, and the dynamic and kinematics models of the aircraft are established by introducing damage factors. The STAR-CCM+ software is used to simulate the aerodynamic force and aerodynamic moment in the case of combined airframe damage. Based on the estimation ability of the L1 adaptive control algorithm for the parameter uncertainty of the controlled object and the automatic adjustment ability of control output, a fault-tolerant control law for electric aircraft is designed in the case of wing damage, horizontal tail damage after a collision, horizontal tail icing, and wing lightning damage. The results show that the control law has good fault-tolerant control ability for combined airframe damage of electric aircraft, and the control system has adaptability, anti-interference, and robustness, which has a good engineering reference significance for flight safety control of other transport aircraft.
Keywords: electric aircraft; collision; lightning strike; icing; fault-tolerant control electric aircraft; collision; lightning strike; icing; fault-tolerant control

Share and Cite

MDPI and ACS Style

Zhang, L.; Mu, J.; Ma, H.; Dai, G.; Tong, S. Research on Fault-Tolerant Control of Combined Airframe Damage of Electric Aircraft. Aerospace 2023, 10, 611. https://doi.org/10.3390/aerospace10070611

AMA Style

Zhang L, Mu J, Ma H, Dai G, Tong S. Research on Fault-Tolerant Control of Combined Airframe Damage of Electric Aircraft. Aerospace. 2023; 10(7):611. https://doi.org/10.3390/aerospace10070611

Chicago/Turabian Style

Zhang, Lei, Jin Mu, Hongtu Ma, Guicheng Dai, and Shengxi Tong. 2023. "Research on Fault-Tolerant Control of Combined Airframe Damage of Electric Aircraft" Aerospace 10, no. 7: 611. https://doi.org/10.3390/aerospace10070611

APA Style

Zhang, L., Mu, J., Ma, H., Dai, G., & Tong, S. (2023). Research on Fault-Tolerant Control of Combined Airframe Damage of Electric Aircraft. Aerospace, 10(7), 611. https://doi.org/10.3390/aerospace10070611

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