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Design and simulation of quantum-dot cellular automata serial decimal pipelined processor based on Turing machine model

机译:基于图灵机模型的量子点蜂窝自动机串行十进制流水线处理器的设计与仿真

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摘要

The quantum-dot cellular automata (QCA) nanoscale computer technology is promising to overcome the limits of the microelectronic CMOS technology. Because the leading role of QCA wires, the serial data transfer/processing is preferable. The financial, Internet of Things, and control computer applications require direct processing of decimal information without representation and conversion errors. Because a QCA wire can be considered as a virtual tape with written binary symbols, a special version of Turing machine model can be used for a QCA computer implementation. Design of a novel QCA serial decimal pipelined processor based on the Turing machine model is presented. The processor uses the run-time tape reconfiguration for arithmetic processing of decimal operands encoded in the 5-bit Johnson-Mobius code. The proposed design demonstrates significant hardware simplification. (C) 2020 Elsevier B.V. All rights reserved.
机译:量子点蜂窝自动机(QCA)纳米级计算机技术有希望克服微电子CMOS技术的极限。由于QCA线的主要作用,因此串行数据传输/处理是优选的。财务,事物和控制计算机应用程序需要直接处理没有表示和转换错误的小数信息。由于QCA线可以被视为具有写入二进制符号的虚拟磁带,所以可以使用特殊版本的图灵计算机实现。提出了一种基于图拉机模型的新型QCA串行流水线处理器的设计。处理器使用在5位Johnson-Mobius代码中编码的十进制操作数的算术处理的运行时磁带重新配置。所提出的设计演示了重要的硬件简化。 (c)2020 Elsevier B.v.保留所有权利。

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