Affiliation:
1. University of Lethbridge, Alberta, Canada
Abstract
Reversible logic is being suggested as a possibility for overcoming potential
power loss and heat dissipation problems that the computing industry may soon
be at a loss to overcome. However, for reversible logic to be a solution we
must have techniques for synthesizing function descriptions to reversible
circuits. This paper presents an improved ESOP-based reversible logic
synthesis approach which leverages situations where cubes are shared by
multiple outputs and ensures that the implementation of each cube requires
just one Toffoli gate. It has the potential to minimize both gate count and
quantum cost, and in fact our experimental results show that this technique
can reduce the quantum cost up to 75% compared to results from the existing
work.
Publisher
National Library of Serbia
Cited by
15 articles.
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1. Synthesis of Reversible Logic Circuits-A Technical Review;2023 International Conference on Advances in Electronics, Communication, Computing and Intelligent Information Systems (ICAECIS);2023-04-19
2. Optimization of Reversible Circuits Using Gate Pair Classification;SN Computer Science;2021-11-02
3. General Method to Design Reversible Universal n-Bit Up/Down Counters;Journal of Circuits, Systems and Computers;2020-01-30
4. Improving the Designs of ESOP-Based Reversible Circuits;Lecture Notes in Electrical Engineering;2019-07-28
5. Reversible Logic: An Introduction;Lecture Notes in Electrical Engineering;2019-07-28