arXiv:2507.23735cs.ROcs.AI2025-07被引 7

用分布式AI代理让水下机器人自主决策更智能

Distributed AI Agents for Cognitive Underwater Robot Autonomy

  • 将大模型分成多个专业代理,分工处理感知、推理和规划
  • 实测在模拟和真实任务中应对突发状况能力显著优于传统规则系统
  • 适合研究智能机器人、水下探测或需要动态适应的复杂场景

在复杂不可预测环境中实现机器人稳健的认知自主仍是一大挑战。本文提出水下机器人自组织自主架构(UROSA),通过在机器人操作系统2(ROS 2)框架内集成分布式大语言模型AI代理,赋予自主水下航行器高级认知能力。UROSA将认知功能去中心化,由专门的AI代理负责多模态感知、自适应推理、动态任务规划与实时决策。核心创新包括:可动态调整角色的灵活代理、利用向量数据库实现检索增强生成的知识管理、基于强化学习的行为优化,以及运行时自动创建ROS 2节点以支持功能扩展。大量实证验证表明,UROSA在仿真与真实水下任务中展现出显著的适应性与可靠性,在应对突发情况、环境不确定性及新任务目标方面远超传统规则架构。该工作不仅推动水下自主技术发展,更建立了一个可扩展、安全且通用的认知机器人框架,适用于多种现实应用场景。

原文摘要 · Abstract (English)

Achieving robust cognitive autonomy in robots navigating complex, unpredictable environments remains a fundamental challenge in robotics. This paper presents Underwater Robot Self-Organizing Autonomy (UROSA), a groundbreaking architecture leveraging distributed Large Language Model AI agents integrated within the Robot Operating System 2 (ROS 2) framework to enable advanced cognitive capabilities in Autonomous Underwater Vehicles. UROSA decentralises cognition into specialised AI agents responsible for multimodal perception, adaptive reasoning, dynamic mission planning, and real-time decision-making. Central innovations include flexible agents dynamically adapting their roles, retrieval-augmented generation utilising vector databases for efficient knowledge management, reinforcement learning-driven behavioural optimisation, and autonomous on-the-fly ROS 2 node generation for runtime functional extensibility. Extensive empirical validation demonstrates UROSA's promising adaptability and reliability through realistic underwater missions in simulation and real-world deployments, showing significant advantages over traditional rule-based architectures in handling unforeseen scenarios, environmental uncertainties, and novel mission objectives. This work not only advances underwater autonomy but also establishes a scalable, safe, and versatile cognitive robotics framework capable of generalising to a diverse array of real-world applications.

水下机器人认知自主分布式AI

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