arXiv:2506.13105cs.RO2025-06中稿 · IROS 2025被引 1

单艘无人潜航器靠声呐测距实现水下目标6维状态精准追踪

Underwater target 6D State Estimation via UUV Attitude Enhance Observability

  • 通过调整潜航器姿态提升观测性,结合卡尔曼滤波优化相对状态估计
  • 仿真显示相比传统方法6维状态估计精度显著提升,误差不随时间发散
  • 无需外部定位系统或多机协作,适合大范围未知水域自主追踪

由于缺乏GPS、水下动力学复杂及传感器限制,无人潜航器(UUV)对非合作目标的相对状态观测仍具挑战。现有定位方法依赖全局定位基础设施或多UUV协同,难以在大范围或未知环境中应用。为此,本文提出一种新型持续相对6D状态估计框架,仅利用双单基声呐的连续噪声距离测量,使单个UUV实现对非合作目标的相对运动估计。核心贡献为一种可观测性增强的姿态控制策略,通过最优调整潜航器姿态,提升卡尔曼滤波下的相对状态可观测性,有效缓解传感器噪声与漂移累积影响。同时引入基于李雅普诺夫的严格证明跟踪控制策略,确保长时间运行稳定性,维持最佳测量距离,防止定位误差发散。理论分析与仿真表明,该方法在6D相对状态估计精度与鲁棒性上显著优于传统方法。本工作提供了一种可扩展、无需基础设施的水下非合作目标追踪方案。

原文摘要 · Abstract (English)

Accurate relative state observation of Unmanned Underwater Vehicles (UUVs) for tracking uncooperative targets remains a significant challenge due to the absence of GPS, complex underwater dynamics, and sensor limitations. Existing localization approaches rely on either global positioning infrastructure or multi-UUV collaboration, both of which are impractical for a single UUV operating in large or unknown environments. To address this, we propose a novel persistent relative 6D state estimation framework that enables a single UUV to estimate its relative motion to a non-cooperative target using only successive noisy range measurements from two monostatic sonar sensors. Our key contribution is an observability-enhanced attitude control strategy, which optimally adjusts the UUV's orientation to improve the observability of relative state estimation using a Kalman filter, effectively mitigating the impact of sensor noise and drift accumulation. Additionally, we introduce a rigorously proven Lyapunov-based tracking control strategy that guarantees long-term stability by ensuring that the UUV maintains an optimal measurement range, preventing localization errors from diverging over time. Through theoretical analysis and simulations, we demonstrate that our method significantly improves 6D relative state estimation accuracy and robustness compared to conventional approaches. This work provides a scalable, infrastructure-free solution for UUVs tracking uncooperative targets underwater.

水下追踪6维估计声呐感知姿态控制

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