Národní úložiště šedé literatury Nalezeno 4 záznamů.  Hledání trvalo 0.01 vteřin. 
Two-Dimensional Versions of Jumping Automata and Their Applications
Švač, Dominik ; Kocman, Radim (oponent) ; Meduna, Alexandr (vedoucí práce)
The aim of this work was to create a type of automaton that allows the recognition of objects from the input image. It consists of two types of automaton, a two-dimensional finite automata and jumping automata. The application of this automata allows you to find the numbers in the image. Recognition is using a decision tree, which helps speed up finding the right number.
Two-Dimentional Finite Automata and Their Applications
Švač, Dominik ; Kocman, Radim (oponent) ; Meduna, Alexandr (vedoucí práce)
The goal of this bachelor thesis is to define a new type of two-dimensional finite state automata that is able to recognize objects from the input image. Automata is focused on the recognition of traffic signs, specifically speed limits for speeds of 50, 70 and 80 km / h. It consists of three parts. All parts run sequentially. The result is a set of marks found in the image.
Two-Dimensional Versions of Jumping Automata and Their Applications
Švač, Dominik ; Kocman, Radim (oponent) ; Meduna, Alexandr (vedoucí práce)
The aim of this work was to create a type of automaton that allows the recognition of objects from the input image. It consists of two types of automaton, a two-dimensional finite automata and jumping automata. The application of this automata allows you to find the numbers in the image. Recognition is using a decision tree, which helps speed up finding the right number.
Two-Dimentional Finite Automata and Their Applications
Švač, Dominik ; Kocman, Radim (oponent) ; Meduna, Alexandr (vedoucí práce)
The goal of this bachelor thesis is to define a new type of two-dimensional finite state automata that is able to recognize objects from the input image. Automata is focused on the recognition of traffic signs, specifically speed limits for speeds of 50, 70 and 80 km / h. It consists of three parts. All parts run sequentially. The result is a set of marks found in the image.

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