Národní úložiště šedé literatury Nalezeno 2 záznamů.  Hledání trvalo 0.00 vteřin. 
ROS framework utilization for autonomous mobile robot control system
Vávra, Patrik ; Krejsa, Jiří (oponent) ; Appel, Martin (vedoucí práce)
This thesis deals with the development of localization and navigation system of a mobile robot for an indoor environment based on ROS framework. The project, ROS framework, and Gazebo simulation environment are briefly described in the theoretical survey section alongside sensors that the robot is equipped with. This is followed by the creation of a model of the robot and a simulation environment in which localization, navigation, and other routines are tested. In the experimental section, the sensors are tested, and the usage of their output is described. Subsequently, algorithms from the simulation are modified and tested on the real robot. In the end section are created educational mini-games described. The main outcome of this thesis is a functional state machine that allows to manually control the robot, give the goal position for navigation and if needed, takes care of autonomous charging of robot.
ROS framework utilization for autonomous mobile robot control system
Vávra, Patrik ; Krejsa, Jiří (oponent) ; Appel, Martin (vedoucí práce)
This thesis deals with the development of localization and navigation system of a mobile robot for an indoor environment based on ROS framework. The project, ROS framework, and Gazebo simulation environment are briefly described in the theoretical survey section alongside sensors that the robot is equipped with. This is followed by the creation of a model of the robot and a simulation environment in which localization, navigation, and other routines are tested. In the experimental section, the sensors are tested, and the usage of their output is described. Subsequently, algorithms from the simulation are modified and tested on the real robot. In the end section are created educational mini-games described. The main outcome of this thesis is a functional state machine that allows to manually control the robot, give the goal position for navigation and if needed, takes care of autonomous charging of robot.

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