一种利用量子点元胞自动机设计卷积编码器的新方法

Riya Sen, Sandip Das
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引用次数: 7

摘要

量子点元胞自动机是一种很有前途的纳米电子计算体系结构,可用于处理二进制信息。它使用量子点阵列中的单个电子执行二进制操作。QCA设计的基本构件是一个QCA单元,它可以用来构建基本门,以及组合和顺序电路。本文提出了一种以串行方式处理信息位的实时应用,即卷积编码器的设计。卷积码是当今流行的无线标准(如IEEE 802.11)以及各种其他系统中使用的功能最强大且使用最广泛的一类代码。卷积编码器在串行数据上工作,并使用移位寄存器和相关的组合逻辑来执行模2加法。本文提出了一种基于QCA的1/ 2速率和1/3速率卷积编码器的设计方法,并给出了仿真结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel approach to design convolution encoder using quantum-dot cellular automata
Quantam-dot cellular automata is a promising nano electronic computational architecture which can be used to process binary information. It performs binary operation using single electrons in arrays of quantum dots. The basic building block in QCA design is a QCA cell which can be used to build basic gates, as well as combinational and sequential circuits. In this paper, design of a real time application of processing information bits in a serial manner, i.e. a convolution encoder is proposed. Convolution codes are the most powerful and widely used class of codes used in today's popular wireless standard (such as IEEE 802.11) along with variety of other systems. Convolution encoder works on serial data and uses shift registers and associated combinational logic that performs modulo-2-addition. In this paper, a novel design of ½ rate and 1/3 rate convolution encoder is proposed using QCA and simulation results are shown.
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