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室内移动机器人自主定位导航系统设计OA

Design of indoor mobile robot autonomous positioning and navigation system

中文摘要英文摘要

针对室内复杂环境下移动机器人定位精度低、导航效率差的问题,设计一套基于机器人操作系统(ROS)的自主定位与导航系统,以提升机器人在未知或动态环境中的自主性与适应性.以Nvidia Jetson Nano 4GB 为计算平台,融合激光雷达、轮式里程计与惯性测量单元,采用自适应蒙特卡洛定位算法(AMCL)进行实时位姿估计;利用Dijkstra算法规划出全局最优路径,并通过上下位机串口通信与 ROS 节点协同,实现运动控制与动态避障.在实验室场景中,系统能够实时构建代价地图,生成从起点至目标点的无碰撞最短路径,机器人在运行中可有效躲避障碍物,定位与导航功能均通过实验验证.所提系统实现了室内移动机器人的自主定位与导航,具有良好的稳定性和实时性,满足复杂环境下的应用需求.

To address the problems of low localization accuracy and poor navigation efficiency of mobile robots in complex indoor environments,this paper designed an autonomous localization and navigation system based on the Robot Operating System(ROS),aiming to improve the robot's autonomy and adaptability in unknown or dynamic environments.The system used an Nvidia Jetson Nano 4GB as the computing platform and fused laser radar,wheel odometry,and an inertial measurement unit.Real-time pose estimation was achieved through the Adaptive Monte Carlo Localization(AMCL)algorithm.The Dijkstra algorithm was employed to plan the global optimal path,and motion control together with dynamic obstacle avoidance was realized via serial communication between the upper and lower computers and coordination of ROS nodes.In laboratory scenarios,the system was able to build a costmap in real time and generate the shortest collisionfree path from the start point to the target point.During operation,the robot effectively avoided obstacles,and both the localization and navigation functions were experimentally validated.The proposed system achieved autonomous localization and navigation for indoor mobile robots,exhibiting good stability and realtime performance,and met the application requirements in complex environments.

于信鑫;金向阳

哈尔滨商业大学 轻工学院,哈尔滨 150028哈尔滨商业大学 轻工学院,哈尔滨 150028

信息技术与安全科学

移动机器人室内环境自主移动路径规划激光SLAMDijkstra算法

mobile robotindoor environmentautonomous movementpath planningLidar SLAMDijkstra algorithm

《哈尔滨商业大学学报(自然科学版)》 2026 (3)

306-312,7

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