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Design and Construction of an Omnidirectional Base for Student Robotics Platform



dc.contributor.advisorPecka Martin
dc.contributor.authorVáclav Veselý
dc.date.accessioned2023-08-29T22:51:28Z
dc.date.available2023-08-29T22:51:28Z
dc.date.issued2023-08-29
dc.identifierKOS-1240440749105
dc.identifier.urihttp://hdl.handle.net/10467/111225
dc.description.abstractThe SRobot is a comprehensive indoor mobile robotic platform, meticulously designed as an educational tool for university students, covering fundamental robotics concepts encompassing both hardware and software aspects. Distinct advantages of the SRobot include its modular design, extended operational lifetime, and innovative capacitive tactile bumper that grants true omnidirectional capabilities. The integration of BLDC motors ensures precision, smoother movement, and energy efficiency. Remarkably cost-effective, the SRobot stands out among comparable options. The construction process is meticulously detailed, providing a replicable guide, including component selection, functionality, and battery management. The PCB design, integrated components, and electronics are thoroughly described, offering a clear assembly blueprint. The firmware section offers insights into STM32 microcontrollers, code upload instructions, robot connection diagrams, BLDC motor control, PID controllers, various interrupts provided by ISR, communication protocols, and protective features. The platform's flexibility with connectors for diverse modules is highlighted. The software section explores ROS packages, topics, messages, the startup sequence, robot model creation, odometry implementation, Gazebo simulation, and RVIZ application, providing a comprehensive understanding of the robot's functionality. The platform's educational suitability is emphasized, showcasing a range of use cases, a dedicated robotics curriculum, and example lessons covering firmware, SLAM algorithms, and more, making the SRobot an ideal educational platform. The conclusion points out the SRobot to be an exemplary indoor mobile robotic platform that effectively fulfills its master's thesis assignment. Its modular design, hardware capabilities, sophisticated firmware, and versatile software make it a valuable educational tool, ready to teach essential robotics concepts to university students.cze
dc.description.abstractThe SRobot is a comprehensive indoor mobile robotic platform, meticulously designed as an educational tool for university students, covering fundamental robotics concepts encompassing both hardware and software aspects. Distinct advantages of the SRobot include its modular design, extended operational lifetime, and innovative capacitive tactile bumper that grants true omnidirectional capabilities. The integration of BLDC motors ensures precision, smoother movement, and energy efficiency. Remarkably cost-effective, the SRobot stands out among comparable options. The construction process is meticulously detailed, providing a replicable guide, including component selection, functionality, and battery management. The PCB design, integrated components, and electronics are thoroughly described, offering a clear assembly blueprint. The firmware section offers insights into STM32 microcontrollers, code upload instructions, robot connection diagrams, BLDC motor control, PID controllers, various interrupts provided by ISR, communication protocols, and protective features. The platform's flexibility with connectors for diverse modules is highlighted. The software section explores ROS packages, topics, messages, the startup sequence, robot model creation, odometry implementation, Gazebo simulation, and RVIZ application, providing a comprehensive understanding of the robot's functionality. The platform's educational suitability is emphasized, showcasing a range of use cases, a dedicated robotics curriculum, and example lessons covering firmware, SLAM algorithms, and more, making the SRobot an ideal educational platform. The conclusion points out the SRobot to be an exemplary indoor mobile robotic platform that effectively fulfills its master's thesis assignment. Its modular design, hardware capabilities, sophisticated firmware, and versatile software make it a valuable educational tool, ready to teach essential robotics concepts to university students.eng
dc.publisherČeské vysoké učení technické v Praze. Vypočetní a informační centrum.cze
dc.publisherCzech Technical University in Prague. Computing and Information Centre.eng
dc.rightsA university thesis is a work protected by the Copyright Act. Extracts, copies and transcripts of the thesis are allowed for personal use only and at one?s own expense. The use of thesis should be in compliance with the Copyright Act http://www.mkcr.cz/assets/autorske-pravo/01-3982006.pdf and the citation ethics http://knihovny.cvut.cz/vychova/vskp.htmleng
dc.rightsVysokoškolská závěrečná práce je dílo chráněné autorským zákonem. Je možné pořizovat z něj na své náklady a pro svoji osobní potřebu výpisy, opisy a rozmnoženiny. Jeho využití musí být v souladu s autorským zákonem http://www.mkcr.cz/assets/autorske-pravo/01-3982006.pdf a citační etikou http://knihovny.cvut.cz/vychova/vskp.htmlcze
dc.subjectSRobotcze
dc.subjectMobilní robotická platformacze
dc.subjectVšesměrový robotcze
dc.subjectModulární designcze
dc.subjectKapacitní dotykový nárazníkcze
dc.subjectBLDC motorycze
dc.subjectSTM32cze
dc.subjectFOCcze
dc.subjectISRcze
dc.subjectTSCcze
dc.subjectLiDARcze
dc.subjectROS balíčkycze
dc.subjectGazebo simulacecze
dc.subjectSLAM algoritmycze
dc.subjectVzdělávací robotická platformacze
dc.subjectKinematika a dynamika všesměrových robotůcze
dc.subjectSRoboteng
dc.subjectIndoor mobile robotic platformeng
dc.subjectOmnidirectional roboteng
dc.subjectModular designeng
dc.subjectCapacitive tactile bumpereng
dc.subjectBLDC motorseng
dc.subjectSTM32eng
dc.subjectField-oriented controleng
dc.subjectInterrupt service routineeng
dc.subjectTouch Sensing Controllereng
dc.subjectLiDAReng
dc.subjectROS packageseng
dc.subjectGazebo simulationeng
dc.subjectSLAM algorithmseng
dc.subjectEducational robotic platformeng
dc.subjectKinematics and dynamics of omnidirectional robotseng
dc.titleNávrh a realizace všesměrového podvozku pro výukovou robotickou platformucze
dc.titleDesign and Construction of an Omnidirectional Base for Student Robotics Platformeng
dc.typediplomová prácecze
dc.typemaster thesiseng
dc.contributor.refereeCmíral Jakub
theses.degree.grantorkatedra kybernetikycze
theses.degree.programmeKybernetika a robotikacze


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