Vibration Characteristic Analysis and Dynamic Reliability Modeling of Multi-Rotor UAVs

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Abstract

To address the unclear vibration failure mechanism and the lack of system-level reliability evaluation methods for multirotor transport UAVs under complex operating conditions, this paper proposes a comprehensive analysis method that combines fluid–structure interaction dynamics with dynamic reliability theory. First, the study analyzes rotor dynamics and vibration characteristics under bidirectional fluid–structure coupling and obtains vibration displacement data. Then, it builds a dynamic reliability model using the Second-Order Reliability Method (SORM) and the Laplace method. The model explores reliability evolution in a dynamic airflow coupling environment. Finally, it establishes a multi-rotor UAV system reliability evaluation method and analyzes the impact of rotor number and layout on system reliability. The results provide a theoretical basis for structural optimization, reliability assurance, and fault tolerance improvement of multi-rotor UAVs under complex conditions.

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Zhou, K., Zhou, D., Wang, X., Guo, Y., & Chen, H. (2025). Vibration Characteristic Analysis and Dynamic Reliability Modeling of Multi-Rotor UAVs. Machines, 13(8). https://doi.org/10.3390/machines13080697

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