National Repository of Grey Literature 6 records found  Search took 0.01 seconds. 
Implementation of Electric Motor Control Algoritms in CompactRIO systems
Gléba, Gergely ; Veselý, Ivo (referee) ; Blaha, Petr (advisor)
This master’s thesis deals with the implementation of existing algorithms of electric AC motor control in Matlab Simulink to LabVIEW Control Design and Simulation. The first part of the thesis treats with the deduction of a mathematical model of an asynchronous motor, permanent magnet synchronous motor and with the theory of vector control of AC motors. In the next part there is a brief guide to create simulation algorithms in LabVIEW environment and to create the model of a motor with EMI functions in language C. The last part contains the comparison of Matlab Simulink and LabVIEW simulation tools.
Digitaly controlled inverter for induction motor
Dráb, Dominik ; Klíma, Bohumil (referee) ; Knobloch, Jan (advisor)
This thesis deals with the design of control unit of frequency converter for asynchronous motor, that is part of the laboratory stand. The work contains basic description of asynchronous machine and explanation of operation and design of frequency converters. Furthermore, the work explains the most commonly used methods for control of electrical drives with asynchronous motor. The following chapter describes the design of control module with microprocessor from Freescale. The work also deals with the creation of software for microprocessor. Additionally, the graphical user interface was designed for controlling the stand using a computer. The final chapter of thesis describes measurement of the induction motor.
Digitaly controlled inverter for induction motor
Dráb, Dominik ; Klíma, Bohumil (referee) ; Knobloch, Jan (advisor)
This thesis deals with the design of control unit of frequency converter for asynchronous motor, that is part of the laboratory stand. The work contains basic description of asynchronous machine and explanation of operation and design of frequency converters. Furthermore, the work explains the most commonly used methods for control of electrical drives with asynchronous motor. The following chapter describes the design of control module with microprocessor from Freescale. The work also deals with the creation of software for microprocessor. Additionally, the graphical user interface was designed for controlling the stand using a computer. The final chapter of thesis describes measurement of the induction motor.
Implementation of Electric Motor Control Algoritms in CompactRIO systems
Gléba, Gergely ; Veselý, Ivo (referee) ; Blaha, Petr (advisor)
This master’s thesis deals with the implementation of existing algorithms of electric AC motor control in Matlab Simulink to LabVIEW Control Design and Simulation. The first part of the thesis treats with the deduction of a mathematical model of an asynchronous motor, permanent magnet synchronous motor and with the theory of vector control of AC motors. In the next part there is a brief guide to create simulation algorithms in LabVIEW environment and to create the model of a motor with EMI functions in language C. The last part contains the comparison of Matlab Simulink and LabVIEW simulation tools.
Modelování a implementace trojfázového úsporného zapojení PWM měniče
Šimek, Petr ; Škramlík, Jiří ; Valouch, Viktor ; Klíma, J.
The mathematical model and description of the three-phase four-switch converter aimed at compensating reactive power is proposed. A mixed p-z approach based on integral transformations (the Laplace and Modified Z-transform) is used for obtaining solution in a closed-form. The analytical procedure is verified by experimental results.
Analytické modelování a implementace trojfázového B4 měniče s SVM modulací
Paclt, Zdeněk ; Šimek, Petr ; Škramlík, Jiří ; Valouch, Viktor ; Klíma, J.
The mathematical model and description of the three-phase four-switch converter aimed at compensating reactive power is proposed. A mixed p-z approach based on integral transformations (the Laplace and Modified Z-transform) is used for obtaining solution in a closed-form. The analytical procedure is verified by experimental results.

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