National Repository of Grey Literature 41 records found  1 - 10nextend  jump to record: Search took 0.01 seconds. 
Intelligent manipulation of laboratory objects using the ABB YuMi robot
Nevřiva, Václav ; Parák, Roman (referee) ; Matoušek, Radomil (advisor)
The aim of the master thesis is to design a laboratory station and a control program operated by a collaborative robot IRB 14000 YuMi using an integrated effector camera to identify laboratory objects and control the progress of the task. In the introductory part, collaborative robots are briefly introduced, the IRB 14000 on which the task is implemented and the RobotStudio development environment together with the IntegratedVision extension are described in more detail. The following chapters describe the laboratory task itself, its solution and testing of the designed program.
FLUID HANDLING USING THE ABB YUMI PLATFORM
Červenka, Roman ; Parák, Roman (referee) ; Matoušek, Radomil (advisor)
The goal of this bachelor thesis is to design and create program for laboratory manipulation. The robot will handle beakers. For further presentation of possible usage of ABB YuMi, a program for drink preparation was made. For robot programming, RobotStudio was used, in which was used RAPID programming language. To understand the philosophy of using RobotStudio to program robots, was also one of the goals of this work. At the end the created programs were tested in robotics laboratory and the results of this work were evaluated.
Demonstrative manufacturing system controlled by MES utilizing AAS
Černocký, Petr ; Kaczmarczyk, Václav (referee) ; Arm, Jakub (advisor)
This work examines today's modern possibilities for production management. More specifically, we focus on MES and its integration within the concept of industry 4.0 using AAS. Furthermore, a search of available open-source MES systems and their description is performed. After their commissioning, their suitability for further use is discussed. There is also an analysis of tools for creating virtual models. The IMES application, which was subsequently slightly modified, and the RobotStudio virtual model creation tool are then selected from these analyzes. This application and tool are then used to implement virtual line control using a separate MES and to basic control using AAS.
Virtual commissioning of robotic production system
Sláma, Martin ; Vetiška, Jan (referee) ; Bražina, Jakub (advisor)
The diploma thesis deals with the virtual commissioning of a robotic production system, which is located at the workshop of the Institute of Production Machines, Systems and Robotics BUT. The theoretical part of the thesis contains an overview of the current state of knowledge in the field of virtual commissioning and a description of the elements to achieve it. Next, the devices located in the specified robotic production cell are described. The practical part then describes the process of creating a simulation model in the program RobotStudio and its subsequent connection with the controlling PLC in TIA Portal via SIMIT and thus perform a virtual commissioning of the workplace.
Virtual commissioning of the automatic assembly of the stepper motor
Filip, Jakub ; Vetiška, Jan (referee) ; Szabari, Mikuláš (advisor)
The diploma thesis deals with the virtual commissioning of a robotic workplace designed for the assembly of parts of NEMA stepper motors 14, 17 and 23. The theoretical part is devoted to research in the field of industrial robotics and virtual commissioning. Furthermore, an analysis of the problem is performed, on the basis of which variants of the robotic workplace are proposed. Then, these are subjected to multi-criteria analysis, which is used to select the resulting concept. This concept is processed as a 3D model and virtually put into operation, thanks to the resulting line cycle is determined.
Collaborative robot control by PLC
Novotný, Jiří ; Benešl, Tomáš (referee) ; Macho, Tomáš (advisor)
This bachelor thesis deals with the control of a collaborative robot using a PLC. To implement this work is used collaborative robot YuMi from ABB and PLC from Siemens of latest series S7-1500. We will get acquainted with products which have been used in project and with the development environment for PLC (TIA Portal) and for robot (RobotStudio). We define the requirements for the communication interface between the robot and the PLC. We will describe a demonstrating task requiring control of a robot using a PLC. The task demonstrates a real application for the end user. Then we implement PROFINET communication interface and implement the described task for the robot. The final solution is then tested in real production line.
ABB RobotStudio - robot control using PLC B&R Automation
Mittaš, Eduard ; Lacko, Branislav (referee) ; Lang, Stanislav (advisor)
The goal of this bachelor thesis is to demonstrate various ways of communication with the controller of the robot as well as consecutive controlling of this robot. The simulation will be achieved by using the TCP/IP protocol, while the communication in the laboratory with real equipment will be assured by Profinet bus. This thesis will show also another solution, which is simple communication and connection between Microsoft Visual Studio and Robotstudio by using TCP/IP protocol. Initial chapters will describe ABB and B&R Automation companies, their control systems, history and information associated with them. Following chapters will serve as a guide describing creating of application in each of three presented solutions.
Design of the control program for industrial robot IRB 120 using RobotStudio software
Nevřiva, Václav ; Lang, Stanislav (referee) ; Parák, Roman (advisor)
The aim of the bachelor thesis is to design a control program for a selected laboratory task in RobotStudio program, its implementation for the industrial robot IRB 120 from ABB Robotics and to verify the proposed solution by simulation and test on real hardware. The introductory part introduces ABB, company products and the development environment. The following chapters describe the selected laboratory task, its solution and testing of the proposed program. The bachelor thesis was extended with the design of user interface for controlling the task and demonstration of working with the robot using virtual reality.
Virtual commissioning of robotized workplace for cold spraying
Miklis, Peter ; Holub, Michal (referee) ; Vetiška, Jan (advisor)
The diploma thesis deals with the virtual commissioning of robotized workplace for cold spraying. The theoretical part of the thesis contains an overview of the current state of knowledge in the field of virtual commissioning, the theory of crating HMI user environments, deals principles of the Rapid programming language as a tool for controlling industrial robots and analysis of robotic workplace components. The practical part defines the structure of the proposed user program and user environment, which are created using software tools Robotstudio and Screenmaker. The last part discusses in detail the steps during the implementation of the created program together with the HMI into commission, which is associated with the testing of functionalities on a real device for cold spraying. The diploma thesis also includes a user manual created for operating an industrial robot.
Virtual commissioning of the robotized workplace for arc welding
Adolt, Lukáš ; Pavlík, Jan (referee) ; Vetiška, Jan (advisor)
This diploma thesis is focused on the design of a robotic workplace for arc welding and its subsequent virtual commissioning. The summary deals with knowledge from industrial robotics and arc welding, the system analysis is focused on the composition of the workplace and the principle of arc welding, including acting influences. In the practical part, several variants of the solution are proposed, the most suitable variant is processed in the form of a 3D model. This model is then simulated, including all processes, a control program is created, and virtual commissioning of the workplace is demonstrated.

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