量子点元胞自动机中对称函数的规则网络

Arighna Deb, D. K. Das
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引用次数: 2

摘要

与基于晶体管的技术相比,量子点元胞自动机(QCA)具有速度更快、体积更小和功耗最低的潜力。在量子点细胞自动机中,基本元素是简单的细胞。这些单元用于构造多数选民门、逆变器和导线。本文利用QCA多数选民门的独特特性来实现对称函数。本文介绍了一种利用量子点元胞自动机(QCA)逻辑实现全对称布尔函数的综合技术。首先,设计了一个简单的正则模块来合成非对称函数。该结构使用3输入多数选民门。一般对称布尔函数,然后实现一个单一的分解方法。我们利用该方法研究了一些已知基准对称函数的综合。对设计进行了仿真,仿真结果表明了所提设计的复杂度、面积和时延。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A regular network of symmetric functions in quantum-dot cellular automata
Quantum-dot cellular automata (QCA) is a technology which has the potential of faster speed, smaller size and minimum power consumption compared to transistor based technology. In quantum-dot cellular automata, the basic elements are simple cells. The cells are used to construct majority voter gate, inverter and wire. This paper utilizes the unique characteristics of QCA majority voter gate to realize symmetric functions. In this paper, we introduce a synthesis technique for implementing totally symmetric Boolean functions using Quantum-dot Cellular Automata (QCA) logic. First, a simple regular module is designed to synthesize unate symmetric functions. The structure uses 3-input majority voter gates. General symmetric Boolean functions are then realized following a unate decomposition method. We study the synthesis of some well known benchmark symmetric functions using the proposed method. The designs are simulated and the simulation result indicates the complexity, area and delay of the proposed designs.
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