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MRÁZEK, V. VAŠÍČEK, Z.
Originální název
Evolutionary Design of Transistor Level Digital Circuits using Discrete Simulation
Typ
článek ve sborníku ve WoS nebo Scopus
Jazyk
angličtina
Originální abstrakt
The objective of the paper is to introduce a new approach to the evolutionary design of digital circuits conducted directly at transistor level. In order to improve the time consuming evaluation of candidate solutions, a discrete event-driven simulator was introduced. The proposed simulator operates on multiple logic levels to achieve reasonable trade-off between performance and precision. A suitable level of abstraction reflecting the behavior of real MOSFET transistors is utilized to minimize the production of incorrectly working circuits. The proposed approach is evaluated in the evolution of basic logic circuits having more than 20 transistors. The goal of the evolutionary algorithm is to design a circuit having the minimal number of transistors and exhibiting the minimal delay. In addition to that, various parameter settings are investigated to increase the successrate of the evolutionary design.
Klíčová slova
Evolutionary design, Transistor-level, Digital circuits, Cartesian genetic programming
Autoři
MRÁZEK, V.; VAŠÍČEK, Z.
Rok RIV
2015
Vydáno
15. 3. 2015
Nakladatel
Springer International Publishing
Místo
Berlin
ISBN
978-3-319-16500-4
Kniha
Genetic Programming, 18th European Conference, EuroGP 2015
Edice
LCNS 9025
Strany od
66
Strany do
77
Strany počet
12
URL
http://dx.doi.org/10.1007/978-3-319-16501-1_6
BibTex
@inproceedings{BUT119802, author="Vojtěch {Mrázek} and Zdeněk {Vašíček}", title="Evolutionary Design of Transistor Level Digital Circuits using Discrete Simulation", booktitle="Genetic Programming, 18th European Conference, EuroGP 2015", year="2015", series="LCNS 9025", pages="66--77", publisher="Springer International Publishing", address="Berlin", doi="10.1007/978-3-319-16501-1\{_}6", isbn="978-3-319-16500-4", url="http://dx.doi.org/10.1007/978-3-319-16501-1_6" }