arXiv:2608.14306cs.AIcs.SY2026-08

多传感器融合驱动无人机地面车协同,确保物理安全与可控决策。

Sensor-Driven Mission Synthesis for UAV/UGV Swarms: A TB-CSPN Coordination Architecture with Hardware-Enforced Safety

论文配图:Sensor-Driven Mission Synthesis for UAV/UGV Swarms: A TB-CSPN Coordination Architecture with Hardware-Enforced Safety
图 1 · 摘自论文原文
  • 用传感器数据生成语义令牌,通过TB-CSPN协调任务演进
  • 在不确定环境下实现毫秒级安全动作合成,支持渐进式任务构建
  • 硬件级安全保护层防止信号干扰导致的失控,适合军事/高危场景

本文提出一种异构无人机/地面车集群的协同架构,从不确定、多模态的传感器证据中合成任务行为,并在执行边界保持硬件强制安全。该方法结合雷达、射频、声学和视觉观测,利用基于话题的通信空间佩特里网(TB-CSPN)进行协调,支持在部分与动态信息条件下逐步形成任务。顾问代理将传感器输出转化为带时间约束的语义标记,监督代理则提供授权与策略控制的任务转换释放。这种解释、协调与执行分离的结构实现了可审计的决策路径,在协调层通过守卫与同步约束非确定性,并实现异构证据的有界时间整合。为增强对抗环境下的鲁棒性——包括网络攻击、欺骗、干扰与通信丢失——数字协调层辅以独立模拟安全包络,对单个车辆的执行器指令进行钳制或否决。沿海监视案例研究展示了该架构在操作不确定性下实现可靠、受控且物理安全的集群协同能力。

原文摘要 · Abstract (English)

This paper presents a coordination architecture for heterogeneous UAV/UGV swarms that synthesises mission actions from uncertain, multi-modal sensor evidence while preserving hardware-enforced safety at the actuation boundary. The approach combines radar, RF, acoustic, and visual observations with Topic-Based Communication Space Petri Net (TB-CSPN) orchestration to support incremental mission formation under partial and evolving information. Consultant agents transform sensor outputs into temporally bounded semantic tokens, while supervisor agents provide authorisation and policy-governed release of mission transitions. This separation between interpretation, coordination, and execution yields auditable decision paths, constrains non-determinism within the coordination layer through guards and synchronisation, and enables bounded-time integration of heterogeneous evidence. To improve resilience in contested environments, including cyber compromise, spoofing, jamming, and communication loss, the digital coordination layer is complemented by independent analogue safety envelopes that clamp or veto unsafe actuator commands issued to individual vehicles. A coastal-surveillance case study illustrates how the proposed architecture enables dependable, governed, and physically safe swarm coordination under operational uncertainty.

集群协同传感器融合安全控制无人机

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