Intention prediction of UAVs based on improved DDQN

Author:

Chen Tianpei,Liu Haotian,Wang Yuhui

Abstract

Abstract Intention prediction plays an indispensable role in future informationized air combat, which will help the command and control center to make a more correct decision. In this paper, an intelligent intention prediction approach based on an improved double deep Q network (DDQN) is developed to generate real-time intention flight paths for unmanned aerial vehicles (UAVs) in complex air combat environment. Initially, by introducing an actual topographic map, the different threats of UAVs in different terrains on the map are analyzed, based on which, a terrain environment reward function is constructed. Secondly, by splitting a complete maneuver action into six basic maneuver units and determining the probability value of each unit, a maneuver reward function is obtained. Further, to improve the real-time performance and accuracy of the standard DDQN algorithm, an improved DDQN algorithm is proposed by using temporal-difference (TD) method and binary tree data structure. Finally, the simulation results verify show that the proposed algorithm has achieved better results under complex terrain conditions.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Reference24 articles.

1. Operational Effectiveness Evaluation of the Swarming UAVs Combat System Based on a System Dynamics Model[J];V Jia;IEEE Access,2019

2. A Two-Stage Method for UCAV TF/TA Path Planning Based on Approximate Dynamic Programming[J];Chen;Mathematical Problems in Engineering,2018

3. Real-Time Path Planning Based on the Situation Space of UCAVS in a Dynamic Environment[J];You;Microgravity Science and Technology,2018

4. An Autonomous UAV Architecture for Remote Sensing and Intelligent Decision-Making[J];Boubeta-Puig;IEEE Internet Computing,2018

5. A Study of 4D Trajectory Prediction Based on Machine Deep Learning[C];Guan,2016

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