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Design and comparison of new fault-tolerant majority gate based on quantum-dot cellular automata

机译:基于量子点蜂窝自动机的新容错多数门的设计与比较

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摘要

Quantum-dot cellular automata (QCA) is increasingly valued by researchers because of its nanoscale size and very low power consumption. However, in the manufacture of nanoscale devices prone to various forms of defects, which will affect the subsequent circuits design. Therefore, fault-tolerant QCA architectures have become a new research direction. The purpose of this paper is to build a novel fault-tolerant three-input majority gate based on normal cells. Compared with the previous structures, the majority gate shows high fault tolerance under single-cell and double-cell omission defects. In order to examine the functionality of the proposed structure, some physical proofs under single cell missing defects are provided. Besides, two new fault-tolerant decoders are constructed based on the proposed majority gate. In order to fully demonstrate the performance of the proposed decoder, the previous decoders were thoroughly compared in terms of fault tolerance, area and delay. The result shows that the proposed design has a good fault tolerance characteristic, while the performance in other aspects is also quite good.
机译:Quantum-Dot Cellular Automata(QCA)因其纳米级尺寸和功耗非常低而越来越受到研究人员的重视。然而,在制造纳米级装置容易出现各种形式的缺陷,这将影响随后的电路设计。因此,容错QCA架构已成为新的研究方向。本文的目的是基于正常电池构建一种新型容错三输入多个栅极。与先前的结构相比,大多数门在单细胞和双电池省略缺陷下显示出高的容错耐受性。为了检查所提出的结构的功能,提供了单一细胞缺失缺陷下的一些物理证据。此外,基于所提出的多数门构建两个新的容错解码器。为了充分展示所提出的解码器的性能,在容错,区域和延迟方面进行了先前的解码器。结果表明,所提出的设计具有良好的容错特性,而其他方面的性能也非常好。

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