Governed by: Ministry of Industry and Information Technology of the People's Republic of China
Sponsored by: Northwestern Polytechnical University  Chinese Society Aeronautics and Astronautics
Address: Aviation Building,Youyi Campus, Northwestern Polytechnical University
Design and implementation of a spliced tilting dual rotor and its LADRC flight control
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Affiliation:

School of Aeronautics,Nanjing University of Aeronautics and Astronautics

Clc Number:

V249. 1

Fund Project:

National Key Laboratory of Rotorcraft Aeromechanics Fund Program of China under Grant

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    Abstract:

    The configuration characteristics of multi rotor unmanned aerial vehicles determine that they are difficult to adapt to complex flight missions. To meet different mission requirements, combining and assembling specific configuration aircraft should be a feasible development direction. Before and after assembly, various flight characteristics of the aircraft change to varying degrees, and the impact of external disturbances also varies, posing great challenges to the design and verification of flight control systems. This article designs a spliced tilted twin rotor aircraft and establishes its flight dynamics model. Based on this, the control strategy of the pre and post assembly aircraft and the position and attitude controllers based on linear active disturbance rejection control (LADRC) are designed, and the simulation verification of aircraft control in gust interference environments is completed. Compared with traditional PID controllers, the superiority of LADRC has been verified. Finally, a real aircraft attitude stability control verification was conducted, and the research results showed that the spliced tilt-rotor dual rotor aircraft and its linear active disturbance rejection controller had strong anti-interference and robustness. The aircraft had good flight control effects before and after assembly.

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LIU Kun, XU Jinfa. Design and implementation of a spliced tilting dual rotor and its LADRC flight control[J]. Advances in Aeronautical Science and Engineering,2025,16(1):93-100

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History
  • Received:July 06,2023
  • Revised:November 23,2023
  • Adopted:December 12,2023
  • Online: August 08,2024
  • Published:
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