Affiliation:
1. College of Automation Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing 211100, China
Abstract
In human-computer gaming scenarios, the autonomous decision-making problem of an unmanned combat air vehicle (UCAV) is a complex sequential decision-making problem involving multiple decision-makers. In this paper, an autonomous maneuver decision-making method for UCAV that considers the partially observable states of Human (the adversary) is proposed, building on a game-theoretic approach. The maneuver decision-making process within the current time horizon is modeled as a game of Human and UCAV, which significantly reduces the computational complexity of the entire decision-making process. In each established game decision-making model, an improved maneuver library that contains all possible maneuvers (called the continuous maneuver library) is designed, and each of these maneuvers corresponds to a mixed strategy of the established game. In addition, the unobservable states of Human are predicted via the Nash equilibrium strategy of the previous decision-making stage. Finally, the effectiveness of the proposed method is verified by some adversarial experiments.
Funder
Major Projects for Science and Technology Innovation 2030
Subject
Artificial Intelligence,Computer Science Applications,Aerospace Engineering,Information Systems,Control and Systems Engineering
Reference36 articles.
1. Automated integration of real-time and non-real-time defense systems;Demir;Def. Technol.,2021
2. Online hierarchical recognition method for target tactical intention in beyond-visual-range air combat;Yang;Def. Technol.,2022
3. Li, S., Wu, Q., Chen, M., and Wang, Y. (2020). CISC 2020: Proceedings of 2020 Chinese Intelligent Systems Conference, Springer.
4. Guo, J., Wang, L., and Wang, X. (2022). A Group Maintenance Method of Drone Swarm Considering System Mission Reliability. Drones, 6.
5. An autonomous aerial combat framework for two-on-two engagements based on basic fighter maneuvers;Shin;Aerosp. Sci. Technol.,2018
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