基于多控制托福利合成的奇偶校验保全可逆乘法器新设计,以新兴量子电路为目标

IF 3.4 3区 计算机科学 Q2 COMPUTER SCIENCE, INFORMATION SYSTEMS Frontiers of Computer Science Pub Date : 2023-12-28 DOI:10.1007/s11704-023-2492-3
Mojtaba Noorallahzadeh, Mohammad Mosleh, Kamalika Datta
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引用次数: 0

摘要

随着最近量子计算机的展示,人们对可逆逻辑合成和优化领域的兴趣发生了不同的转变。由于每个量子操作本质上都是可逆的,因此探索可逆电路设计和优化有着巨大的动力。说到电路中的故障,奇偶校验保持特性有助于检测永久性和临时性故障。在可逆电路中,奇偶校验保持特性确保输入和输出奇偶校验相等。在本文中,我们提出了六种奇偶校验保全可逆块(Z、F、A、T、S 和 L),并改进了量子成本。这些可逆块是用现有的合成方法合成的,该方法可生成多控制托福利(MCT)门的网表。在可逆电路层面应用了各种优化规则,然后从 NCV 库中转换成基本量子门的网表。利用具有奇偶校验保护特性的功能块,提出了全梯形、无符号和有符号乘法器的设计方案。所提出的设计与最先进的方法进行了比较,发现在实现成本方面更胜一筹。在量子成本、垃圾输出、恒定输入和门数方面,4 位无符号乘法器和 5 位有符号乘法器的平均节省率分别为 25.04%、20.89%、21.17% 和 51.03%,与最新成果相比,平均节省率分别为 18.59%、13.82%、13.82% 和 27.65%。
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A new design of parity-preserving reversible multipliers based on multiple-control toffoli synthesis targeting emerging quantum circuits

With the recent demonstration of quantum computers, interests in the field of reversible logic synthesis and optimization have taken a different turn. As every quantum operation is inherently reversible, there is an immense motivation for exploring reversible circuit design and optimization. When it comes to faults in circuits, the parity-preserving feature donates to the detection of permanent and temporary faults. In the context of reversible circuits, the parity-preserving property ensures that the input and output parities are equal. In this paper we suggest six parity-preserving reversible blocks (Z, F, A, T, S, and L) with improved quantum cost. The reversible blocks are synthesized using an existing synthesis method that generates a netlist of multiple-control Toffoli (MCT) gates. Various optimization rules are applied at the reversible circuit level, followed by transformation into a netlist of elementary quantum gates from the NCV library. The designs of full-adder and unsigned and signed multipliers are proposed using the functional blocks that possess parity-preserving properties. The proposed designs are compared with state-of-the-art methods and found to be better in terms of cost of realization. Average savings of 25.04%, 20.89%, 21.17%, and 51.03%, and 18.59%, 13.82%, 13.82%, and 27.65% respectively, are observed for 4-bit unsigned and 5-bit signed multipliers in terms of quantum cost, garbage output, constant input, and gate count as compared to recent works.

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来源期刊
Frontiers of Computer Science
Frontiers of Computer Science COMPUTER SCIENCE, INFORMATION SYSTEMS-COMPUTER SCIENCE, SOFTWARE ENGINEERING
CiteScore
8.60
自引率
2.40%
发文量
799
审稿时长
6-12 weeks
期刊介绍: Frontiers of Computer Science aims to provide a forum for the publication of peer-reviewed papers to promote rapid communication and exchange between computer scientists. The journal publishes research papers and review articles in a wide range of topics, including: architecture, software, artificial intelligence, theoretical computer science, networks and communication, information systems, multimedia and graphics, information security, interdisciplinary, etc. The journal especially encourages papers from new emerging and multidisciplinary areas, as well as papers reflecting the international trends of research and development and on special topics reporting progress made by Chinese computer scientists.
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