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Design of an Efficient Multilayer Arithmetic Logic Unit in Quantum-Dot Cellular Automata (QCA)

机译:量子点细胞自动机(QCA)中高效的多层算术逻辑单元的设计

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摘要

Quantum-dot cellular automata (QCA) is a new nano-scale technology that due to making significant improvements in the design of electronic circuits can be considered as an appropriate alternative to CMOS technology. The arithmetic logic unit (ALU) is a fundamental component of the central processing unit to carry out the arithmetic and logical operations that multiplexer and full adder play an important role in its operations. In this brief, based on the extracted features of the arithmetic operations of the ALU, we propose a new special low-complexity QCA 4: 1 multiplexer, which is application-specific to the proposed ALU. Moreover, a new QCA full adder is proposed based on the cell interaction. Likewise, a QCA multilayer ALU structure is designed based on the validated proposed structures to carry out four logical and eight arithmetic operations. The functional correctness of the proposed structures are evaluated by QCADesigner tool; also, QCAPro as an accurate power estimator tool is applied to investigate their power dissipation. The simulation results demonstrate that the proposed structures outperform in comparison to counterpart designs in terms of cell number, area, latency, and power consumption.
机译:量子点细胞自动机(QCA)是一项新的纳米级技术,由于对电子电路设计进行了重大改进,因此可以认为是CMOS技术的合适替代品。算术逻辑单元(ALU)是中央处理器的基本组成部分,用于执行算术和逻辑运算,而多路复用器和全加法器在其运算中起着重要作用。在本摘要中,基于ALU算术运算的提取特征,我们提出了一种新的特殊的低复杂度QCA 4:1多路复用器,它是针对所提出的ALU的特定应用。此外,基于细胞相互作用,提出了一种新的QCA全加法器。同样,基于已验证的拟议结构设计QCA多层ALU结构,以执行四个逻辑和八个算术运算。通过QCADesigner工具评估所提出结构的功能正确性;同样,QCAPro作为一种精确的功率估算器工具也被用于研究其功耗。仿真结果表明,与同类设计相比,拟议的结构在电池数量,面积,等待时间和功耗方面均优于同类设计。

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