卫星拒止条件下的智能船舶港内航行辅助定位方法
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大连海事大学航海学院 大连 116026

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U675.9;TN98

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国家自然科学基金重点项目(52231014)、大连海事大学团队项目(3132023511)资助


Navigation auxiliary localization approach for intelligent ships in port scenarios under satellite-denied conditions
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Navigation College, Dalian Maritime University,Dalian 116026, China

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    摘要:

    GNSS目前已在海事船舶普及使用,然而随着世界局势日益严峻,港口在军事演习或其他特殊时期具有越来越重要的作用,更容易受到外界干扰,导致船舶使用单一导航系统的可靠性降低,甚至面临GNSS接收机无法工作的风险。因此,卫星拒止条件下的智能船舶港内连续定位和目标精准测距问题,成为制约无人船舶驾驶技术发展的关键挑战。本文针对智能船舶港内航行的实际需求,提出了一种基于港口先验地图的船舶辅助定位方法,并在此基础上通过构建船载LiDAR的ROI自适应划分策略,提出了一种基于船舶航行状态的目标测量算法。本文方法可实现智能船舶在卫星拒止条件下的快速重定位,并对待航水域内的目标进行实时精确测量。实船试验结果表明,所提方法的辅助定位效果和测距稳定性均表现较好,其中APE平均值为0.058 m,STD为0.044 m,RMSE为0.073 m,显著提升了智能船舶在复杂港口环境下获取船位的鲁棒性。

    Abstract:

    The GNSS has been widely adopted in maritime ships, however, with the increasingly complex global situation, ports have assumed greater strategic importance during military exercises and other special periods, making them more susceptible to external interference. This can reduce the reliability of ships that rely solely on a single navigation system and may even result in GNSS receiver failure. Therefore, the problem of continuous localization and accurate target ranging for intelligent ships in ports under satellite-denied conditions has become a critical challenge restricting the development of autonomous navigation technologies. To address the practical requirements of intelligent ship navigation in port scenarios, this paper proposes an auxiliary localization approach based on prior port maps. On this basis, a target measurement algorithm is developed by constructing an adaptive ROI partitioning strategy for the shipborne LiDAR according to the ship′s navigation state. The proposed method enables rapid re-localization of intelligent ships and real-time, high-precision measurement of targets within navigable waters under satellite-denied conditions. Field experiments demonstrate that the proposed method achieves satisfactory performance in both auxiliary localization and ranging stability, with an APE of 0.058 m, STD of 0.044 m, and RMSE of 0.073 m. These results indicate a significant improvement in the robustness of intelligent ship localization in complex port environments.

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鲁洪瑞,张英俊,王少博,张浩泽,陈泽正.卫星拒止条件下的智能船舶港内航行辅助定位方法[J].电子测量技术,2026,49(10):43-50

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  • 在线发布日期: 2026-08-25
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