National Repository of Grey Literature 4 records found  Search took 0.01 seconds. 
Autonomic Quadcopter Model
Medla, Eduard ; Ošmera, Pavel (referee) ; Zuth, Daniel (advisor)
The aim of this work was to describe available elements from quadcopter model, build the model, describe possible autonomous behavior in space and realize chosen algorithm.
Altitude control of flying robot
Palacký, Tomáš ; Šembera, Jaroslav (referee) ; Baránek, Radek (advisor)
This bachelor’s thesis deals firstly with design and construction of a device for testing of altitude control algorithms of a flying robot. Secondly with creating and testing of an altitude control algorithm in order to apply findings while creating a copter control system. Provided is a selection and analysis of used hardware and software components – microcontroller AVR ATmega, ultrasonic sensor, motor controller and also communication interfaces IC, USART and SPI. Also design and realization of electrical wiring, circuit board and mechanical structure is being described here. The next section includes creation of software for microcontroller and PC application. The altitude control algorithm is developed using a simulation, furthermore tested and tuned for desired behavior.
Autonomic Quadcopter Model
Medla, Eduard ; Ošmera, Pavel (referee) ; Zuth, Daniel (advisor)
The aim of this work was to describe available elements from quadcopter model, build the model, describe possible autonomous behavior in space and realize chosen algorithm.
Altitude control of flying robot
Palacký, Tomáš ; Šembera, Jaroslav (referee) ; Baránek, Radek (advisor)
This bachelor’s thesis deals firstly with design and construction of a device for testing of altitude control algorithms of a flying robot. Secondly with creating and testing of an altitude control algorithm in order to apply findings while creating a copter control system. Provided is a selection and analysis of used hardware and software components – microcontroller AVR ATmega, ultrasonic sensor, motor controller and also communication interfaces IC, USART and SPI. Also design and realization of electrical wiring, circuit board and mechanical structure is being described here. The next section includes creation of software for microcontroller and PC application. The altitude control algorithm is developed using a simulation, furthermore tested and tuned for desired behavior.

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