Synthesis of Reversible Logic Using Enhanced Genetic Programming Approach
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- @InProceedings{Abubakar:2018:ICCOINS,
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author = "Mustapha Yusuf Abubakar and Low {Tang Jung}",
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booktitle = "2018 4th International Conference on Computer and
Information Sciences (ICCOINS)",
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title = "Synthesis of Reversible Logic Using Enhanced Genetic
Programming Approach",
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year = "2018",
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abstract = "A new enhanced reversible logic circuit synthesis
method was developed using reversible gates that
include NOT, CNOT (Feynman), Toffoli, Fredkin, Swap,
and Peres gates. The synthesis method was done using
newly developed genetic programming. Usually previous
synthesis methods that uses genetic algorithms or other
similar evolutionary algorithms suffers a problem known
as blotting which is a sudden uncontrolled growth of an
individual (circuit), which may render the synthesis
inefficient because of memory usage, making the
algorithm difficult to continue running and eventually
stack in a local minima, there for an optimized
reversible circuit may not be generated. In this method
the algorithm used was blot free, the blotting was
carefully controlled by fixing a suitable length and
size of the individuals in the population. Following
this approach, the cost of generating circuits was
greatly reduced giving the algorithm to reach the end
of the last designated generation to give out optimal
or near optimal results. The results of the circuits
generated using this method were compared with some of
the results already in the literature, and in many
cases, our results appeared to be better in terms of
gate count and quantum cost metrics.",
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keywords = "genetic algorithms, genetic programming",
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DOI = "doi:10.1109/ICCOINS.2018.8510602",
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month = aug,
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notes = "Also known as \cite{8510602}",
- }
Genetic Programming entries for
Mustapha Yusuf Abubakar
Low Tang Jung
Citations