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一种新型可逆逻辑门及其使用量子点细胞自动机实现具有成本效益的算术逻辑电路的系统方法。

A novel reversible logic gate and its systematic approach to implement cost-efficient arithmetic logic circuits using QCA.

作者信息

Ahmad Peer Zahoor, Quadri S M K, Ahmad Firdous, Bahar Ali Newaz, Wani Ghulam Mohammad, Tantary Shafiq Maqbool

机构信息

Department of Computer Science, University of Kashmir, Srinager, Jammu and Kashmir, India.

Department of Computer Science, Jamia Millia Islamia, New Delhi, India.

出版信息

Data Brief. 2017 Oct 7;15:701-708. doi: 10.1016/j.dib.2017.10.011. eCollection 2017 Dec.

Abstract

Quantum-dot cellular automata, is an extremely small size and a powerless nanotechnology. It is the possible alternative to current CMOS technology. Reversible QCA logic is the most important issue at present time to reduce power losses. This paper presents a novel reversible logic gate called the F-Gate. It is simplest in design and a powerful technique to implement reversible logic. A systematic approach has been used to implement a novel single layer reversible Full-Adder, Full-Subtractor and a Full Adder-Subtractor using the F-Gate. The proposed Full Adder-Subtractor has achieved significant improvements in terms of overall circuit parameters among the most previously cost-efficient designs that exploit the inevitable nano-level issues to perform arithmetic computing. The proposed designs have been authenticated and simulated using QCADesigner tool ver. 2.0.3.

摘要

量子点细胞自动机是一种尺寸极小且能耗极低的纳米技术。它有可能成为当前互补金属氧化物半导体(CMOS)技术的替代方案。可逆量子点细胞自动机逻辑是目前降低功耗的最重要问题。本文提出了一种名为F门的新型可逆逻辑门。它设计最简单,是实现可逆逻辑的强大技术。已采用一种系统方法,使用F门实现了一种新型单层可逆全加器、全减器和全加/减器。在利用不可避免的纳米级问题进行算术运算的最具成本效益的设计中,所提出的全加/减器在整体电路参数方面取得了显著改进。所提出的设计已使用QCADesigner工具版本2.0.3进行了验证和模拟。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/46de/5671476/359a5843af18/gr1.jpg

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