Detail výsledku

Evolutionary Approach to Synthesis and Optimization of Ordinary and Polymorphic Circuits

GAJDA, Z. Evolutionary Approach to Synthesis and Optimization of Ordinary and Polymorphic Circuits. Brno: Department of Computer Systems FIT BUT, 2011. 92 p.
Typ
dizertace
Jazyk
angličtina
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Abstrakt

This thesis deals with the evolutionary design and optimization of ordinary and polymorphic circuits. New extensions of Cartesian Genetic Programming (CGP) that allow reducing of the computational time and obtaining more compact circuits are proposed and evaluated. Second part of the thesis is focused on new methods for synthesis of polymorphic circuits. Proposed methods, based on polymorphic binary decision diagrams and polymorphic multiplexing, extend the ordinary circuit representations with the aim of including polymorphic gates. In order to reduce the number of gates in circuits synthesized using proposed methods, an evolutionary optimization based on CGP is implemented and evaluated. The implementations of polymorphic circuits optimized by CGP represent the best known solutions if the number of gates is considered as the target criterion.

Klíčová slova

Polymorphic gate, polymorphic circuit, digital circuit design, evolutionary design, evolutionary
optimization, Cartesian Genetic Programming.

Rok
2011
Strany
92
Vydavatel
Department of Computer Systems FIT BUT
Místo
Brno
BibTeX
@misc{BUT192755,
  author="Zbyšek {Gajda}",
  title="Evolutionary Approach to Synthesis and Optimization of Ordinary and Polymorphic Circuits",
  year="2011",
  pages="92",
  publisher="Department of Computer Systems FIT BUT",
  address="Brno",
  url="https://www.fit.vut.cz/research/publication/9673/"
}
Soubory
Projekty
Výzkum informačních technologií z hlediska bezpečnosti, MŠMT, Institucionální prostředky SR ČR (např. VZ, VC), MSM0021630528, zahájení: 2007-01-01, ukončení: 2013-12-31, řešení
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EvoAI Hardware (VZ EHW)
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