arXiv:2607.03072cs.MAcs.RO2026-07

打造可支持海空潜多域协同的实时海洋机器人仿真平台

LOTUSim: Multi-Domain Simulator for Marine Robotics

论文配图:LOTUSim: Multi-Domain Simulator for Marine Robotics
图 1 · 摘自论文原文
  • 支持海空潜多类型无人机实时协同,允许多人在线交互
  • 可支撑大规模异构无人机集群在共享环境中运行
  • 基于埃克曼模型的高效水流模拟,精度显著优于传统方法

仿真对海洋机器人至关重要,可用于操作员训练、任务预演及人机交互,尤其在真实测试成本高或危险的场景下。现有仿真器多聚焦自主系统,缺乏人机协同与真实物理环境。本文提出LOTUSim,一个开源、实时的海洋仿真平台,支持空中、水面和水下机器人在协同海军任务中的多用户交互。首先,实现了用户实时交互性能,同时保证大规模舰队在共享环境下的可扩展性;验证表明,该平台在保持严格实时执行与高视觉保真度的前提下,可支持大规模异构海洋无人机群。其次,提出一种计算高效的埃克曼启发式分层水下流模型,能捕捉风驱动、深度依赖的流动特性,具备足够的物理保真度用于大规模仿真。与常用随机高斯-马尔可夫流模型相比,该模型在海洋再分析数据验证中表现出显著更高的准确性。结果证实LOTUSim适用于人机协同的海洋机器人研究。

原文摘要 · Abstract (English)

Simulation is essential for maritime robotics, supporting operator training, mission rehearsal, and human-vehicle interaction in environments where real-world testing is costly or hazardous. Existing simulators focus primarily on autonomy systems and often lack human-in-the-loop interaction and realistic environmental physics. This paper introduces LOTUSim, an open-source, real-time maritime simulator supporting multi-user interaction across aerial, surface, and underwater robotic systems for coordinated naval-style operations. The first contribution of this work is enabling real-time interactive performance for users while ensuring scalability to large fleets operating within a shared interactive simulation environment. Validation demonstrates robust human-in-the-loop performance, maintaining strict real-time execution and high visual fidelity while scaling to large heterogeneous maritime drone swarms. The second contribution is a computationally efficient, Ekman-inspired layered, underwater current model that captures wind-driven, depth-dependent flow dynamics with sufficient physical fidelity for large-scale simulations. Validation against ocean reanalysis data demonstrates substantially improved accuracy compared to commonly used stochastic Gauss-Markov current models. These results confirm LOTUSim's suitability as a simulation platform for operatorin-the-loop maritime robotics research.

海洋机器人仿真平台多域协同水流建模

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