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Intelligent decision -making of airborne terminal infrared composite jamming based on DACTM -PPO

  • Northwestern Polytechnical University Xian
  • National Key Laboratory of Aircraft Configuration Design

Research output: Contribution to journalArticlepeer-review

Abstract

With the continuous improvement in the guidance accuracy and maneuverability of infrared-guided air-to-air missiles, combat aircraft find it increasingly difficult to effectively evade the risk of infrared missile hits through maneu-vering avoidance or single infrared countermeasures alone. As a result, composite infrared countermeasures have become a critical means to ensure aircraft survivability. To address the challenge of airborne terminal composite infrared countermeasures, this study proposes an intelligent decision-making method based on an improved Proximal Policy Optimization(PPO)algorithm. From the perspective of the airborne terminal confrontation scenario, the decision constraints faced by combat aircraft under infrared-guided missile attacks are analyzed, and models for infrared decoy flares and laser directional jamming are established. An improved PPO algorithm incorporating a dynamic asymmetric clipping mechanism and a fusion of temporal memory and attention mechanisms is proposed to enhance convergence efficiency and solution quality. Furthermore, a reward function integrating the characteristics of jamming means is designed, incorporating overuse and ineffective-use penalty terms to achieve a rational balance between jamming effectiveness and resource consumption. Simulation results demonstrate that the intelligent decision-making method for infrared composite jamming can organize infrared jamming measures in a reasonably coordinated manner, exhibiting excellent performance under various typical aircraft-missile confrontation scenarios. Compared with the original near-end strategy optimization algorithm, the flexible action-evaluation algorithm, and the preset rule-based method, this method shows significant advantages in metrics such as aircraft survivability, missile miss distance, and resource utilization efficiency, demonstrating good application value.

Translated title of the contribution基于DACTM-PPO 的机载末端红外复合干扰智能决策
Original languageEnglish
Article number332759
JournalHangkong Xuebao/Acta Aeronautica et Astronautica Sinica
Volume47
Issue number7
DOIs
StatePublished - 15 Apr 2026

Keywords

  • airborne terminal defense
  • infrared composite jamming
  • infrared decoy bombs
  • laser directional jamming
  • reinforcement learning
  • 机载末端防御;红外复合干扰;强化学习;红外诱饵弹;激光定向干扰

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