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A 2D Mapping Method Based on Virtual Laser Scans for Indoor Robots
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作者 Xu-Yang Shao Guo-Hui Tian Ying Zhang 《International Journal of Automation and computing》 EI CSCD 2021年第5期747-765,共19页
The indoor robots are expected to complete metric navigation tasks safely and efficiently in complex environments, which is the essential prerequisite for accomplishing other high-level operation tasks. 2 D occupancy ... The indoor robots are expected to complete metric navigation tasks safely and efficiently in complex environments, which is the essential prerequisite for accomplishing other high-level operation tasks. 2 D occupancy grid maps are sufficient to support the robots in avoiding all obstacles in the environments during navigation. However, the maps based on normal laser scans only reflect a horizontal slice of the environment, which may cause the problem of some obstacles missing or misinterpreting their exact boundaries,thereby threatening the safety and efficiency of robot navigation. This paper presents a 2 D mapping method based on virtual laser scans to provide a more comprehensive representation of obstacles for indoor robot navigation. The resulting maps can accurately represent the top-down projected contours of all obstacles no matter where their vertical positions are. The virtual laser scans are initially generated from raw data of an RGB-D camera based on the filtering, projection, and polar-coordinate scanning. The scans are fed directly to the laser-based simultaneous localization and mapping(SLAM) algorithms to update the current map and robot position. Two auxiliary strategies are proposed to further improve the quality of maps by reducing the impact of the narrow field of view and the blind zone of the RGB-D camera on the observations. In this paper, the improved virtual laser generation method makes the extracted 2 D observations fit the laser-based SLAM algorithms, and two auxiliary strategies are novel ways to improve map quality. The generated maps can reflect the comprehensive obstacle information in indoor environments with good accuracy. The comparative experiments are carried out based on four simulation scenarios and three real-world scenarios to prove the effectiveness of our 2 D mapping method. 展开更多
关键词 2d mapping indoor robots virtual laser mapping auxiliary strategies safe navigation
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一种用于移动机器人室内定位与导航的二维码 被引量:12
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作者 郑睿 原魁 李园 《高技术通讯》 CAS CSCD 北大核心 2008年第4期369-374,共6页
借鉴矩阵式二维码的思想,提出了一种新的适用于移动机器人(MR)进行目标识别与定位的二维码——MR 二维码。该二维码以排列成矩阵的图案表达信息;其基于形状不变量理论设计的外轮廓,可保证对其进行提取时的鲁棒性;内部单元模块数量可以... 借鉴矩阵式二维码的思想,提出了一种新的适用于移动机器人(MR)进行目标识别与定位的二维码——MR 二维码。该二维码以排列成矩阵的图案表达信息;其基于形状不变量理论设计的外轮廓,可保证对其进行提取时的鲁棒性;内部单元模块数量可以根据需要进行选择,从而可以为移动机器人进行目标识别与定位提供足够的信息;采用BCH 码作为编解码方式具有纠错功能,可以克服光照变化引起的误识。实验结果表明,MR 二维码作为一种人工标志具有很好的实用性。 展开更多
关键词 室内导航 机器人视觉 mr二维码
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基于2-D范围扫描的室内场景识别方法 被引量:2
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作者 郜春艳 何秀娟 +1 位作者 黄文美 刘卓锟 《电光与控制》 北大核心 2018年第12期30-34,共5页
对于在室内工作的机器人而言,要完成不同环境的自主导航就必须能够对其所处场景进行有效识别。传统的方法是通过视觉或雷达等传感器对所处环境进行匹配以实现场景识别。提出了一种基于2-D范围扫描的室内场景识别的方法。该方法对激光雷... 对于在室内工作的机器人而言,要完成不同环境的自主导航就必须能够对其所处场景进行有效识别。传统的方法是通过视觉或雷达等传感器对所处环境进行匹配以实现场景识别。提出了一种基于2-D范围扫描的室内场景识别的方法。该方法对激光雷达的范围扫描信息进行特征提取,利用所提取的样本训练基于局部感受野的极限学习机,对多种室内场景进行分类识别。在Gazebo搭建的仿真环境中采集虚拟范围扫描数据,对室内场景识别方法进行了研究。利用DR Dataset提供的测距数据对所提出的方法进行了实验验证。实验结果表明:该方法的室内场景识别准确率高于传统方法。基于2-D范围扫描场景识别的研究也为机器人实现自主导航提供理论依据和实验数据。 展开更多
关键词 移动机器人 自主导航 2-D范围扫描 室内场景识别 基于局部感受野的极限学习机
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