Paper
21 July 2023 Research on intelligent algorithm for autonomous landing of quadrotor UAV
Chaohang Xue, Liying Jin, Kelian Hu, Xindong Hu, Yujie Shen
Author Affiliations +
Proceedings Volume 12717, 3rd International Conference on Artificial Intelligence, Automation, and High-Performance Computing (AIAHPC 2023); 127171M (2023) https://doi.org/10.1117/12.2684775
Event: 3rd International Conference on Artificial Intelligence, Automation, and High-Performance Computing (AIAHPC 2023), 2023, Wuhan, China
Abstract
This paper takes the autonomous landing of four-rotor UAV as the specific research object. Aiming at the problem of identifying the feature points of landing signs and improving the accuracy of autonomous landing, an improved multi-objective soft subspace clustering algorithm is proposed. The anti-redundant mutation operator and forward comparison operation are designed, it is proposed to improve the population diversity and convergence speed of the algorithm. The iNSGA-II is used as the base algorithm, and the repair operator and local search operator are designed to reflect the clustering characteristics. An autonomous landing control model based on visual recognition is established. A large number of position feature points are clustered and analyzed to decouple the highly nonlinear mapping relationship in the feature space, and then the redundant information between the dimensions is stripped to achieve the maximum stability of the sampling points, the importance sequence of all features and the accurate classification.
© (2023) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Chaohang Xue, Liying Jin, Kelian Hu, Xindong Hu, and Yujie Shen "Research on intelligent algorithm for autonomous landing of quadrotor UAV", Proc. SPIE 12717, 3rd International Conference on Artificial Intelligence, Automation, and High-Performance Computing (AIAHPC 2023), 127171M (21 July 2023); https://doi.org/10.1117/12.2684775
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KEYWORDS
Unmanned aerial vehicles

Detection and tracking algorithms

Evolutionary algorithms

Navigation systems

Mathematical modeling

Mathematical optimization

Target recognition

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