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面向铁路巡检的四足机器人高保真虚拟仿真研究

High-fidelity virtual simulation of quadruped robots oriented to railway inspection

  • 摘要: 针对铁路人工巡检效率低、风险高,极端工况下机器人巡检数据获取受限、安全隐患大的问题,构建了四足机器人高保真物理仿真平台。利用三维建模技术和Isaac Sim引擎还原了无砟轨道几何特征和材质属性;基于Isaac Lab框架训练了四足机器人运动策略,实现了轨道环境稳定通行;依托ROS 2操作系统实现了机器人状态信息、传感器数据的标准化实时发布,并在夜间巡检、道床异物识别、塌方区域巡检、人员侵限工况下进行了仿真测试。测试结果表明,四足机器人可稳定通过无砟轨道高度差区域,在多种巡检工况下均能获得稳定的巡检数据。该平台为四足机器人巡检提供了安全、高效的基座,也为铁路数字孪生与智能运维提供了可参考的技术和框架。

     

    Abstract: In response to the low efficiency and high risks of manual railway inspection, as well as limited data acquisition and prominent safety hazards in robot inspection under extreme working conditions, this paper constructed a high-fidelity physical simulation platform for quadruped robots. It adopted 3D modeling technology and the Isaac Sim engine to reconstruct the geometric features and material properties of ballastless tracks. Based on the Isaac Lab framework, this paper trained the locomotion policy of the quadruped robot to achieve stable traversal in track environments. With the support of the ROS 2 operating system, the platform realized standardized real-time publishing of robot status and sensor data. This paper further conducted simulation tests covering nighttime inspection, track bed foreign object recognition, collapsed area inspection, and personnel intrusion conditions. Experimental results show that the quadruped robot can steadily traverse height difference areas on ballastless tracks and obtain stable inspection data under various working scenarios. The platform serves as a safe and efficient experimental foundation for quadruped robot railway inspection and provides technical references and framework support for railway digital twin and intelligent operation and maintenance.

     

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