DocumentCode :
1931950
Title :
A Cognitive Approach for Optimal Minimization of State Transitions in Nondeterministic Finite Automata
Author :
Aravind, Sudip ; Mathews, Rony
fYear :
2012
fDate :
25-27 Sept. 2012
Firstpage :
363
Lastpage :
368
Abstract :
Power set construction and its variants to eliminate "dead", "unreachable" states have been the prevalent methods of minimization from Non-Deterministic Finite Automata to Deterministic Finite Automata. The drawbacks for these were the lack of adaptive improvements into the minimization process. The adaptation by means of cognitive models - perception, reasoning and decision-making - is being proposed as a better solution while handling real life problems involving decision making on transitions of states. The non-determinism added by the ambiguity in parallel transition options are resolved by applying cognitive processes. The ACT-R architecture is found to be convenient for modeling systems whose functionality can be deconstructed into a set of states, with the transition functions being modeled as production rules. The resultant model reduces the number of states from 2k to manageable values.
Keywords :
deterministic automata; finite automata; minimisation; ACT-R architecture; cognitive approach; deterministic finite automata; minimization process; nondeterministic finite automata; optimal minimiation; parallel transition options; power set construction; state transitions; Adaptation models; Automata; Computational modeling; Computer architecture; Doped fiber amplifiers; Minimization; Production; ACT-R; Cognitive model; DFA; NFA; State Transitions;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computational Intelligence, Modelling and Simulation (CIMSiM), 2012 Fourth International Conference on
Conference_Location :
Kuantan
ISSN :
2166-8531
Print_ISBN :
978-1-4673-3113-5
Type :
conf
DOI :
10.1109/CIMSim.2012.35
Filename :
6338105
Link To Document :
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