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MANIPULATION

Autonomous object manipulation and transportation using a mobile service robot equipped with an RGB-D and LiDAR sensor

David Jiménez, Tomás Olvera Hale, Ulises Orozco-Rosas, Kenia Picos

Year
2021
Citations
2

Abstract

This paper presents the implementation of a mobile service robot with a manipulator and a navigation stack to interact and move through an environment providing a delivery type service. The implementation uses a LiDAR sensor and an RGB-D camera to navigate and detect objects that can be picked up by the manipulator and delivered to a target location. The robot navigation stack includes mapping, localization, obstacle avoidance, and trajectory planning for robust autonomous navigation across an office environment. The manipulator uses the RGB-D camera to recognize specific objects that can be picked up. Experimental results are presented to validate the implementation and robustness.

Keywords

Computer visionComputer scienceMobile robotService robotRobustness (evolution)Artificial intelligenceObstacle avoidanceMobile robot navigationObstacleRobot

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