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May 13, 2026Drones0 citationsOpen Access

Fast Fixed-Time-Based Prescribed Performance Fault-Tolerant Control of Quadrotor UAV Systems

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ZLZhuang LiuHarbin Institute of TechnologyDCDingmeng ChiHarbin Institute of TechnologyJTJianing TangMinzu University of China

Key Points

  • This research aims to develop a high-performance control strategy for quadrotor UAVs under various disturbances and faults.
  • Proposed a non-singular fixed-time terminal sliding mode control method for controlling UAVs.
  • Introduced a variable exponential fixed-time adaptive sliding mode disturbance observer for better disturbance estimation.
  • Developed a fixed-time fault-tolerant control scheme considering actuator saturation and performance constraints.
  • The proposed control strategy effectively manages model uncertainties and external disturbances.
  • Simulation results show significant improvements in tracking performance under actuator saturation conditions.
  • The controller's convergence was established using Lyapunov stability theory.

Abstract

With the gradual development of science and technology, increasingly complex application environments impose higher requirements on the control performance of quadrotor unmanned aerial vehicles (UAVs). This requires UAVs to achieve high-performance tracking control under various challenging conditions, such as model uncertainties, external disturbances, actuator saturation, and actuator faults. Considering these issues, this paper proposes a novel fixed-time controller. First, to address the external disturbances and model uncertainties that UAVs may encounter during flight, a non-singular fixed-time terminal sliding mode control method is proposed, and a variable exponential fixed-time adaptive sliding mode disturbance observer is introduced to improve the estimation accuracy of the lumped disturbances. Secondly, considering the impact of actuator input saturation, an auxiliary system is constructed to mitigate the actuator saturation problem. Finally, a fixed-time fault-tolerant control scheme with actuator saturation and prescribed performance constraints is investigated for quadrotor UAVs. The convergence performance of the controller is rigorously established based on Lyapunov stability theory. Comparative simulation results are provided to demonstrate the effectiveness of the proposed control strategy.

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Cite This Study

Liu et al. (2026) studied this question.

synapsesocial.com/papers/6a0414a279e20c90b444491chttps://doi.org/10.3390/drones10050363
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Prescribed-Time Sliding-Mode Fault-Tolerant Control for Quadrotor UAVs Based on Disturbance Observer2026
  2. 2Adaptive Fuzzy Sliding-Mode Fixed-Time Control for Quadrotor Unmanned Aerial Vehicles With Prescribed Performance2024 · 58 citations
  3. 3Reliability Oriented Fixed Time Control for Quadrotors Subject to Actuator Degradation2026
  4. 4Predetermined Performance Function‐based Adaptive Fixed‐time Terminal Sliding Mode Control for a Quadrotor UAV2026
  5. 5Fixed‐Time Command‐Filtered Prescribed Performance Control of Quadrotor UAVs With External Disturbances2026