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Published in: The Journal of Supercomputing 2/2023

04-08-2022

Design of novel area-efficient coplanar reversible arithmetic and logic unit with an energy estimation in quantum-dot cellular automata

Authors: Rama Krishna Reddy Venna, G. Durga Jayakumar

Published in: The Journal of Supercomputing | Issue 2/2023

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Abstract

A quantum-dot cellular automaton is a new technology that solves all the disputes CMOS technology faces. Quantum-dot cellular automata-based computations run at ultra-high speeds with very high device density and low power consumption. Reversible logic design, featured in quantum-dot cellular automata, permits fully invertible computation. The arithmetic and logic units are the major components in all microprocessor-based systems that probably serve as the processing device's heart. This paper discusses an area-efficient quantum-dot cellular automata technology-based coplanar, reversible arithmetic and logic unit using the double Peres and Feynman gates. With a latency of \(2.5\) clocks and a total area of 0.1 μm2, the proposed arithmetic and logic unit performs 19 logic and arithmetic operations. QCA Designer and QD-E are used to simulate the proposed design and energy consumption, respectively. The proposed design's total energy dissipation, as measured by QCA Designer-E, is 5.45e−002 eV, and the average energy dissipation is 4.95e−003 eV. The proposed method has a considerable number of improvements in terms of latency, the number of operations, and area compared to earlier work.

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Literature
1.
go back to reference Das JC, De D (2019) Novel design of reversible priority encoder in quantum-dot cellular automata based on Toffoli gate and Feynman gate. J Supercomput 75:6882–6903CrossRef Das JC, De D (2019) Novel design of reversible priority encoder in quantum-dot cellular automata based on Toffoli gate and Feynman gate. J Supercomput 75:6882–6903CrossRef
4.
5.
go back to reference Snider GL, Orlov, et al (1999) Quantum-dot cellular automata. J Vac Sci Technol A Vac Surf Films 17(4):1394–1398CrossRef Snider GL, Orlov, et al (1999) Quantum-dot cellular automata. J Vac Sci Technol A Vac Surf Films 17(4):1394–1398CrossRef
6.
go back to reference Heikalabad SR, Gadim MR (2018) Design of improved arithmetic logic unit in quantum-dot cellular automata. Int J Theor Phys 57(6):1733–1747MathSciNetCrossRefMATH Heikalabad SR, Gadim MR (2018) Design of improved arithmetic logic unit in quantum-dot cellular automata. Int J Theor Phys 57(6):1733–1747MathSciNetCrossRefMATH
7.
go back to reference Roy R, Sarkar, et al (2021) Design and testing of a reversible ALU by quantum cells automata electron-spin technology. J Supercomput 77(12):13601–13628CrossRef Roy R, Sarkar, et al (2021) Design and testing of a reversible ALU by quantum cells automata electron-spin technology. J Supercomput 77(12):13601–13628CrossRef
10.
go back to reference Lent CS, Tougaw et al (1993) Quantum cellular automata. Nanotechnology 4(1):49–57CrossRef Lent CS, Tougaw et al (1993) Quantum cellular automata. Nanotechnology 4(1):49–57CrossRef
11.
go back to reference Bahar AN, Waheed S, Hossain N, Asaduzzaman Md (2018) A novel 3-input XOR function implementation in quantum dot-cellular automata with energy dissipation analysis. Alex Eng J 57(2):729–738CrossRef Bahar AN, Waheed S, Hossain N, Asaduzzaman Md (2018) A novel 3-input XOR function implementation in quantum dot-cellular automata with energy dissipation analysis. Alex Eng J 57(2):729–738CrossRef
12.
go back to reference Tougaw PD, Lent CS (1994) Logical devices implemented using quantum cellular automata. J Appl Phys 75(3):1818–1825CrossRef Tougaw PD, Lent CS (1994) Logical devices implemented using quantum cellular automata. J Appl Phys 75(3):1818–1825CrossRef
13.
go back to reference Foroutan SA, Hossein, et al (2021) Investigating multiple defects on a new fault-tolerant three-input QCA majority gate. J Supercomput 77(8):8305–8325CrossRef Foroutan SA, Hossein, et al (2021) Investigating multiple defects on a new fault-tolerant three-input QCA majority gate. J Supercomput 77(8):8305–8325CrossRef
14.
go back to reference Walus K, Jullien GA (2006) Design tools for an emerging SoC technology: quantum-dot cellular automata. Proc IEEE 94(6):1225–1244CrossRef Walus K, Jullien GA (2006) Design tools for an emerging SoC technology: quantum-dot cellular automata. Proc IEEE 94(6):1225–1244CrossRef
15.
go back to reference Morrison M, Ranganathan N (2014) Synthesis of dual-rail adiabatic logic for low power security applications. IEEE Trans Comput Aided Des Integr Circuits Syst 33(7):975–988CrossRef Morrison M, Ranganathan N (2014) Synthesis of dual-rail adiabatic logic for low power security applications. IEEE Trans Comput Aided Des Integr Circuits Syst 33(7):975–988CrossRef
17.
go back to reference Hung WNN, Song X, Yang et al (2006) Optimal synthesis of multiple output boolean functions using a set of quantum gates by symbolic reachability analysis. IEEE Trans Comput Aided Des Integr Circuits Syst 25(9):1652–1663CrossRef Hung WNN, Song X, Yang et al (2006) Optimal synthesis of multiple output boolean functions using a set of quantum gates by symbolic reachability analysis. IEEE Trans Comput Aided Des Integr Circuits Syst 25(9):1652–1663CrossRef
19.
go back to reference Sasamal TN, Singh AK, Mohan A (2016) Efficient design of reversible ALU in quantum-dot cellular automata. Optik 127(15):6172–6182CrossRef Sasamal TN, Singh AK, Mohan A (2016) Efficient design of reversible ALU in quantum-dot cellular automata. Optik 127(15):6172–6182CrossRef
20.
go back to reference Naghibzadeh A, Houshmand et al (2017) Design and simulation of a reversible ALU by using QCA cells to improve evaluation parameters. J Comput Electron 16(3):883–895CrossRef Naghibzadeh A, Houshmand et al (2017) Design and simulation of a reversible ALU by using QCA cells to improve evaluation parameters. J Comput Electron 16(3):883–895CrossRef
21.
go back to reference Babaie S, Sadoghifar A, Bahar AN (2018) Design of an efficient multilayer arithmetic logic unit in quantum-dot cellular automata (QCA). IEEE Trans Circuits Syst II Express Briefs 66(6):963–967 Babaie S, Sadoghifar A, Bahar AN (2018) Design of an efficient multilayer arithmetic logic unit in quantum-dot cellular automata (QCA). IEEE Trans Circuits Syst II Express Briefs 66(6):963–967
23.
go back to reference Oskouei SM, Ghaffari A (2019) Designing a new reversible ALU by QCA for reducing occupation area. J Supercomput 75(8):5118–5144CrossRef Oskouei SM, Ghaffari A (2019) Designing a new reversible ALU by QCA for reducing occupation area. J Supercomput 75(8):5118–5144CrossRef
24.
go back to reference Norouzi M, Heikalabad SR, Salimzadeh F (2020) A reversible ALU using HNG and Ferdkin gates in QCA nanotechnology. Int J Circuit Theory Appl 48(8):1291–1303CrossRef Norouzi M, Heikalabad SR, Salimzadeh F (2020) A reversible ALU using HNG and Ferdkin gates in QCA nanotechnology. Int J Circuit Theory Appl 48(8):1291–1303CrossRef
25.
go back to reference Ahmadpour S-S, Mosleh M, Rasouli H (2020) The design and implementation of a robust single-layer QCA ALU using a novel fault-tolerant three-input majority gate. J Supercomput 76(12):10155–10185CrossRef Ahmadpour S-S, Mosleh M, Rasouli H (2020) The design and implementation of a robust single-layer QCA ALU using a novel fault-tolerant three-input majority gate. J Supercomput 76(12):10155–10185CrossRef
26.
go back to reference Safaiezadeh B, Mahdipour et al (2021) Novel design, and simulation of reversible ALU in quantum-dot cellular automata. J Supercomput 78(1):868–882CrossRef Safaiezadeh B, Mahdipour et al (2021) Novel design, and simulation of reversible ALU in quantum-dot cellular automata. J Supercomput 78(1):868–882CrossRef
28.
go back to reference Bahar AN, Waheed et al (2018) A novel 3-input XOR function implementation in quantum dot-cellular automata with energy dissipation analysis. Alex Eng J 57(2):729–738CrossRef Bahar AN, Waheed et al (2018) A novel 3-input XOR function implementation in quantum dot-cellular automata with energy dissipation analysis. Alex Eng J 57(2):729–738CrossRef
29.
go back to reference Walus K, Dysart et al (2004) QCADesigner: a rapid design and simulation tool for quantum-dot cellular automata. IEEE Trans Nanotechnol 3(1):26–31CrossRef Walus K, Dysart et al (2004) QCADesigner: a rapid design and simulation tool for quantum-dot cellular automata. IEEE Trans Nanotechnol 3(1):26–31CrossRef
30.
go back to reference Kaity A, Singh S (2021) Optimized area-efficient quantum-dot cellular automata-based reversible code converter circuits: design and energy performance estimation. J Supercomput 77(10):11160–11186CrossRef Kaity A, Singh S (2021) Optimized area-efficient quantum-dot cellular automata-based reversible code converter circuits: design and energy performance estimation. J Supercomput 77(10):11160–11186CrossRef
31.
go back to reference Patidar M, Gupta N (2020) An efficient design of edge-triggered synchronous memory element using quantum-dot cellular automata with optimized energy dissipation. J Comput Electron 19(2):529–542CrossRef Patidar M, Gupta N (2020) An efficient design of edge-triggered synchronous memory element using quantum-dot cellular automata with optimized energy dissipation. J Comput Electron 19(2):529–542CrossRef
32.
go back to reference Sill Torres F, Wille R, Niemann P, Drechsler R (2018) An energy-aware model for the logicsynthesis of quantum-dot cellular automata. IEEE Trans Comput Aided Des Integr Circ Syst 37(12):3031–3041CrossRef Sill Torres F, Wille R, Niemann P, Drechsler R (2018) An energy-aware model for the logicsynthesis of quantum-dot cellular automata. IEEE Trans Comput Aided Des Integr Circ Syst 37(12):3031–3041CrossRef
34.
go back to reference Khan A, Arya R (2021) Optimal demultiplexer unit design and energy estimation using quantum-dot cellular automata. J Supercomput 77:1714–1738CrossRef Khan A, Arya R (2021) Optimal demultiplexer unit design and energy estimation using quantum-dot cellular automata. J Supercomput 77:1714–1738CrossRef
Metadata
Title
Design of novel area-efficient coplanar reversible arithmetic and logic unit with an energy estimation in quantum-dot cellular automata
Authors
Rama Krishna Reddy Venna
G. Durga Jayakumar
Publication date
04-08-2022
Publisher
Springer US
Published in
The Journal of Supercomputing / Issue 2/2023
Print ISSN: 0920-8542
Electronic ISSN: 1573-0484
DOI
https://doi.org/10.1007/s11227-022-04740-9

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