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Novel Robust Design for Reversible Code Converters and Binary Incrementer with Quantum-Dot Cellular Automata

机译:具有量子点蜂窝自动机的可逆代码转换器和二进制增量的新型鲁棒设计

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This work, we employ computing around quantum-dot automata to construct the architecture of the reversible code converters and binary incrementer. The code converter and binary incrementer are made up of Feynman gate and Peres gate, respectively. We have presented the robust design of Ex-OR in QCA, which is used for the construction of code converters and binary incrementer. The layouts of proposed circuits were made using the primary elements such as majority gate, inverter, and binary wire. A novel binary-to-gray converter design offers 59% cell count reduction and 36% area reduction in primitives improvement from the benchmark designs. Being pipeline of PG gate to construct the 1-bit, 2-bit, and 3-bit binary incrementer, we can use this robust layout in the QCA implementation of binary incrementer. By the comparative result, it is visualized that the binary incrementer such as 1-bit, 2-bit, and 3-bit achieved 60.82, 60.72, and 64.79% improvement regarding cell count from the counterpart.
机译:这项工作,我们采用Quantum-Dot Automata计算来构建可逆代码转换器和二进制增量器的架构。代码转换器和二进制增量分别由Feynman Gate和Peres Gate组成。我们介绍了QCA中的强大设计,用于构建代码转换器和二进制增量。使用诸如多数栅极,逆变器和二进制线的主要元件制造所提出的电路的布局。一部新型二进制到灰色转换器设计提供59%的细胞计数降低和36%的基元从基数改进了基准设计。作为PG门的管道构建1位,2位和3位二进制递增线,我们可以在二进制递增器的QCA实现中使用这种强大的布局。通过比较结果,可视化二进制增量,例如1位,2位和3位,实现了关于来自对应的细胞计数的60.82,60.72和64.79%的改进。

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