Publication detail

Evolutionary Digital Circuit Design with Fast Candidate Solution Establishment in Field Programmable Gate Arrays

DOBAI, R. GLETTE, K. TORRESEN, J. SEKANINA, L.

Original Title

Evolutionary Digital Circuit Design with Fast Candidate Solution Establishment in Field Programmable Gate Arrays

Type

conference paper

Language

English

Original Abstract

Field programmable gate arrays (FPGAs) are a popular platform for evolving digital circuits. FPGAs allow to be reconfigured partially which provides a natural way of establishing candidate solutions. Recent research focuses on the hardware implementation of evolutionary design platforms. Several approaches were developed for effective implementation of candidate solutions in FPGAs. In this paper a new mutation operator is proposed for evolutionary algorithms. The chromosome representing the candidate solution is mutated in such a way that only one configuration frame is required for establishing the mutated candidate solution in hardware. The experimental results confirmed that the reduced number of configuration frames and mutations at lower level of granularity ensure faster evolution, generation of more candidate solutions in a given time and solutions with better quality.

Keywords

evolutionary design, mutation, reconfiguration, image filters, Zynq.

Authors

DOBAI, R.; GLETTE, K.; TORRESEN, J.; SEKANINA, L.

RIV year

2014

Released

9. 12. 2014

Publisher

Institute of Electrical and Electronics Engineers

Location

Piscataway

ISBN

978-1-4799-4480-4

Book

2014 IEEE International Conference on Evolvable Systems Proceedings

Pages from

85

Pages to

92

Pages count

6

URL

BibTex

@inproceedings{BUT111483,
  author="Roland {Dobai} and Kyrre {Glette} and Jim {Torresen} and Lukáš {Sekanina}",
  title="Evolutionary Digital Circuit Design with Fast Candidate Solution Establishment in Field Programmable Gate Arrays",
  booktitle="2014 IEEE International Conference on Evolvable Systems Proceedings",
  year="2014",
  pages="85--92",
  publisher="Institute of Electrical and Electronics Engineers",
  address="Piscataway",
  doi="10.1109/ICES.2014.7008726",
  isbn="978-1-4799-4480-4",
  url="http://dx.doi.org/10.1109/ICES.2014.7008726"
}