Adaptive Aberrance Repressed Correlation Filters with Cooperative Optimization in High-Dimensional Unmanned Aerial Vehicle Task Allocation and Trajectory Planning

Author:

Zheng Zijie1ORCID,Zhang Zhijun1,Li Zhenzhang2ORCID,Yu Qiuda1ORCID,Jiang Ya1

Affiliation:

1. School of Automation Science and Engineering, South China University of Technology, Guangzhou 510006, China

2. School of Mathematics and Systems Science, Guangdong Polytechnic Normal University, Guangzhou 510665, China

Abstract

In the rapidly evolving field of unmanned aerial vehicle (UAV) applications, the complexity of task planning and trajectory optimization, particularly in high-dimensional operational environments, is increasingly challenging. This study addresses these challenges by developing the Adaptive Distortion Suppression Correlation Filter Cooperative Optimization (ARCF-ICO) algorithm, designed for high-dimensional UAV task allocation and trajectory planning. The ARCF-ICO algorithm combines advanced correlation filter technologies with multi-objective optimization techniques, enhancing the precision of trajectory planning and efficiency of task allocation. By incorporating weather conditions and other environmental factors, the algorithm ensures robust performance at low altitudes. The ARCF-ICO algorithm improves UAV tracking stability and accuracy by suppressing distortions, facilitating optimal path selection and task execution. Experimental validation using the UAV123@10fps and OTB-100 datasets demonstrates that the ARCF-ICO algorithm outperforms existing methods in Area Under the Curve (AUC) and Precision metrics. Additionally, the algorithm’s consideration of battery consumption and endurance further validates its applicability to current UAV technologies. This research advances UAV mission planning and sets new standards for UAV deployment in both civilian and military applications, where adaptability and accuracy are critical.

Publisher

MDPI AG

Reference46 articles.

1. An adaptive clustering-based algorithm for automatic path planning of heterogeneous UAVs;Chen;IEEE Trans. Intell. Transp. Syst.,2021

2. Coverage path planning of heterogeneous unmanned aerial vehicles based on ant colony system;Chen;Swarm Evol. Comput.,2022

3. Global-and-Local Attention-Based Reinforcement Learning for Cooperative Behaviour Control of Multiple UAVs;Chen;IEEE Trans. Veh. Technol.,2024

4. Hyper-sausage coverage function neuron model and learning algorithm for image classification;Ning;Pattern Recognit.,2023

5. The New Development Concept Helps Accelerate the Formation of New Quality Productivity: Theoretical Logic and Implementation Paths;Yao;J. Xi’an Univ. Financ. Econ.,2024

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