National Repository of Grey Literature 4 records found  Search took 0.00 seconds. 
Design of laboratory model of Inverse Pendulum
Dušek, Jiří ; Grepl, Robert (referee) ; Šolc, František (advisor)
Purpose of this Bachelor’s thesis was to set matemathic laboratory model fixture of „Inverted penduluem“ togther, to verify it and on this base to create simulating model. Furthermore for this simulating model system to create way its controling in „stabilisation in upper instable location“ mode and in „crane during moving with the load“ mode. For operation in both modes was state-feedback regulator chosen and projected by method LQR, which was applied after that to real model of laboratory fixture. Realization of exsisting system was described and during using incremental rotary encoder and I/O card of new type was modernized. Further possibility of operation of carriage travel of pendulum by voltage supply was examined. Rotation version of laboratory model fixture was projected and alternative driving facilities were selected.
Design and implementation of demonstration model "Inverted pendulum" customized for long time autonomous use
Sukovatý, Adam ; Chalupa, Jan (referee) ; Grepl, Robert (advisor)
This thesis is connected with precedent thesis concerning the construction and creation of inverted pendulum. The first step is an identification of model parameters based on derivation of equations of motion. Process continues with linearization of equations and design state space control using LQR method. Control of pendulum was improved by swing-up mechanism, during its testing was detected some restrictions of the system. These problems were analysed in the end of thesis and there is proposed solution.
Design of laboratory model of Inverse Pendulum
Dušek, Jiří ; Grepl, Robert (referee) ; Šolc, František (advisor)
Purpose of this Bachelor’s thesis was to set matemathic laboratory model fixture of „Inverted penduluem“ togther, to verify it and on this base to create simulating model. Furthermore for this simulating model system to create way its controling in „stabilisation in upper instable location“ mode and in „crane during moving with the load“ mode. For operation in both modes was state-feedback regulator chosen and projected by method LQR, which was applied after that to real model of laboratory fixture. Realization of exsisting system was described and during using incremental rotary encoder and I/O card of new type was modernized. Further possibility of operation of carriage travel of pendulum by voltage supply was examined. Rotation version of laboratory model fixture was projected and alternative driving facilities were selected.
Design and implementation of demonstration model "Inverted pendulum" customized for long time autonomous use
Sukovatý, Adam ; Chalupa, Jan (referee) ; Grepl, Robert (advisor)
This thesis is connected with precedent thesis concerning the construction and creation of inverted pendulum. The first step is an identification of model parameters based on derivation of equations of motion. Process continues with linearization of equations and design state space control using LQR method. Control of pendulum was improved by swing-up mechanism, during its testing was detected some restrictions of the system. These problems were analysed in the end of thesis and there is proposed solution.

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