National Repository of Grey Literature 3 records found  Search took 0.00 seconds. 
Pogamut and USARSim integration
Vejman, Martin ; Bída, Michal (advisor) ; Obdržálek, David (referee)
In this work we integrate the USARSim simulator with the Pogamut platform in order to facilitate the development of USARSim virtual robots. We present a set of robots solving simple task as a proof-of-concept. We also provide an aerial robot solving more complicated task. This robot will be used to evaluate the suitability of reactive planner POSH for controlling robots in USARSim. Two versions of the robot will be created and compared qualitatively. The first version will use pure Java, the second version will use reactive planner POSH.
Simulation of Multi-UAV Cooperative Surveillance Using Pogamut and USARSim
Dufek, Jan ; Plch, Tomáš (advisor) ; Čermák, Miroslav (referee)
The main objective of this thesis is to introduce a simulation platform, which has been developed utilizing Pogamut and USARSim, for cooperative aerial surveillance using multiple unmanned aerial vehicles (UAVs). The graphical user interface (GUI) of the simulator contains the automatically created bird's eye view of a 3D virtual environment. This is used to enter locations and parameters of objects (UAVs, charging stations and areas) and also to visualize the process of a simulation. The thesis proposes a system for the analysis of the quality of surveillance, whose results are presented in the GUI in the form of a time graph and a heat map. Part of the proposed platform is a UAV objective-based control system including charging stations scheduling. A total of seven algorithms for cooperative surveillance has been implemented, tested in three different scenarios and analyzed for coverage quality. Powered by TCPDF (www.tcpdf.org)
Pogamut and USARSim integration
Vejman, Martin ; Bída, Michal (advisor) ; Obdržálek, David (referee)
In this work we integrate the USARSim simulator with the Pogamut platform in order to facilitate the development of USARSim virtual robots. We present a set of robots solving simple task as a proof-of-concept. We also provide an aerial robot solving more complicated task. This robot will be used to evaluate the suitability of reactive planner POSH for controlling robots in USARSim. Two versions of the robot will be created and compared qualitatively. The first version will use pure Java, the second version will use reactive planner POSH.

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