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Publishing Language: Chinese

Triggering and detection of pilot-induced oscillations in boundary avoidance-tracking tasks

Qiuyang XIA1,2Meng LIU1Hao WU1Zhongshan WANG1Ruikai ZHAO1Keyong ZHU1( )
School of Aeronautic Science and Engineering,Beihang University,Beijing 100191,China
Department of Aerospace Science and Technology,Polytecnic University of Milan,Milan 20156,Italy
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Abstract

Pilot-induced oscillation (PIO) represents a critical human factor contributing to rotorcraft accidents. Its triggering mechanism is intrinsically linked to the dynamic characteristics of the rotorcraft-pilot coupling (RPC) system. An innovative multi-task flight simulation experimental platform was constructed based on the boundary avoidance-tracking (BAT) theoretical model. The impacts of two important triggering factors—input configuration and border difficulty—on task performance and the PIO phenomenon were methodically examined using parametric control. Experimental results demonstrate that the designed triggering parameters effectively induced behavioral changes in subjects, thereby affecting their task performance and PIO characteristic responses. Additionally, compared to conventional techniques like the phase-aggression criteria (PAC) method and the Klyde’s wavelet transform approach, the improved power-preserving wavelet transform (PPWT) detection method suggested in this study shown better recognition performance. This research refines the PIO research paradigm under the BAT task framework. The proposed “trigger-detection” experimental approach and methodology provide a novel technological pathway for investigating RPC phenomena.

CLC number: V249.4 Document code: A Article ID: 1001-5965(2026)08-2876-11

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Journal of Beijing University of Aeronautics and Astronautics
Pages 2876-2886

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Cite this article:
XIA Q, LIU M, WU H, et al. Triggering and detection of pilot-induced oscillations in boundary avoidance-tracking tasks. Journal of Beijing University of Aeronautics and Astronautics, 2026, 52(8): 2876-2886. https://doi.org/10.13700/j.bh.1001-5965.2025.0497

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Received: 18 July 2025
Published: 11 October 2025
© Journal of Beijing University of Aeronautics and Astronautics