arXiv:2409.08472eess.SYcs.AI2024-09被引 1

通过关键航点建模无人机意图,提升防御系统对非法入侵的预警能力。

An Intent Modeling and Inference Framework for Autonomous and Remotely Piloted Aerial Systems

  • 用关键航点和路径模式定义无人机飞行意图,构建双规划器框架。
  • 基于多模态动态模型与IMM滤波提取特征,实现高精度意图分类。
  • 适用于自主、遥控等多类型无人机,适合安防与空域管控场景。

本文提出一种用于保护地理围栏免受非法飞行的无人机意图建模与推断框架。首次给出无人航空系统(UAS)意图的数学定义,引入关键航点及其模式概念,结合运动过程全面刻画意图。框架包含任务规划器(用于生成飞行序列)与防御规划器,适用于二维与三维有障碍环境中的自主、半自主及遥控系统。以安全应用为例构建意图库。假设目标已检测与跟踪,提出多种决策者目标函数形式,结合深度学习方法。进一步讨论了用于表征无人机飞行的多模态动态模型,并利用交互式多模型(IMM)滤波提取特征以训练意图分类器。仿真研究中采用基于注意力机制的双向长短期记忆网络(Bi-LSTM)进行意图推断,实验展示了轨迹生成、雷达测量模拟等在2D与3D环境中的表现。

原文摘要 · Abstract (English)

An intent modelling and inference framework is presented to assist the defense planning for protecting a geo-fence against unauthorized flights. First, a novel mathematical definition for the intent of an uncrewed aircraft system (UAS) is presented. The concepts of critical waypoints and critical waypoint patterns are introduced and associated with a motion process to fully characterize an intent. This modelling framework consists of representations of a UAS mission planner, used to plan the aircraft's motion sequence, as well as a defense planner, defined to protect the geo-fence. It is applicable to autonomous, semi-autonomous, and piloted systems in 2D and 3D environments with obstacles. The framework is illustrated by defining a library of intents for a security application. Detection and tracking of the target are presumed for formulating the intent inference problem. Multiple formulations of the decision maker's objective are discussed as part of a deep-learning-based methodology. Further, a multi-modal dynamic model for characterizing the UAS flight is discussed. This is later utilized to extract features using the interacting multiple model (IMM) filter for training the intent classifier. Finally, as part of the simulation study, an attention-based bi-directional long short-term memory (Bi-LSTM) network for intent inference is presented. The simulation experiments illustrate various aspects of the framework, including trajectory generation, radar measurement simulation, etc., in 2D and 3D environments.

意图识别无人机防御系统动态建模

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