Design of QCA based memory cell using a novel majority voter with physical validation

IF 2.9 4区 计算机科学 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC Nano Communication Networks Pub Date : 2024-05-28 DOI:10.1016/j.nancom.2024.100513
Rupali Singh , Pankaj Singh , Ali Nawaz Bahar
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Abstract

Quantum Dot Cellular Automata (QCA) is a unique transistor less paradigm which effectively uses change in cell polarization to perform logical operations with high speed, low power and high intricacy. In recent years, the need of high performance memory cell is increased for improving the system performance. This paper presents the design of a QCA based memory cell with read write capabilities. In recent past, most of the QCA circuits are designed using the conventional three input majority voter. The conventional three input majority gate is not fault tolerant. Thus, we need an alternative design which can serve as the majority voter and also shows the fault tolerance. Moreover, the design of three input majority voter is not much addressed . In this paper, an alternative, simple structure of three input majority voter is presented which is better than the conventional one in terms of fault tolerance. In addition to this, the proposed three input majority voter is power aware and efficient to realize various digital circuits. The correctness of the proposed majority voter is validated through the physical proof. Moreover, the proposed gate is subjected to cell displacement defect to investigate the testability. The proposed gate is further used to implement rudimentary elements such as XOR gate, multiplexer and D latch. Finally, the design of Random Access Memory (RAM) cell with read, write, set and reset capabilities is proposed using the presented majority voter. The proposed circuits are further subjected to comprehensive analyses for estimation of cost functions and energy dissipation. The investigation of presented circuits manifests the use of proposed majority voter for next generation computing circuits.

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利用新型多数投票器设计基于 QCA 的存储单元并进行物理验证
量子点蜂窝自动机(Quantum Dot Cellular Automata,QCA)是一种独特的少晶体管范式,它有效地利用蜂窝极化的变化来执行高速、低功耗和高复杂度的逻辑运算。近年来,为提高系统性能,对高性能存储单元的需求日益增加。本文介绍了一种基于 QCA 的具有读写功能的存储单元的设计。近年来,大多数 QCA 电路都是使用传统的三输入多数表决器设计的。传统的三输入多数门不能容错。因此,我们需要一种替代设计,既能充当多数表决器,又能显示容错性。此外,三输入多数表决器的设计并没有得到广泛关注。本文提出了一种结构简单的三输入多数表决器替代方案,在容错性方面优于传统方案。此外,所提出的三输入多数投票器还具有功耗意识,可高效实现各种数字电路。通过物理证明,验证了所提出的多数表决器的正确性。此外,还对所提出的门进行了单元位移缺陷测试,以研究其可测试性。提出的门进一步用于实现 XOR 门、多路复用器和 D 锁存器等基本元件。最后,利用所提出的多数表决器,提出了具有读、写、设置和复位功能的随机存取存储器(RAM)单元的设计方案。对提出的电路进一步进行了综合分析,以估算成本函数和能量消耗。对所提出电路的研究表明,所提出的多数投票器可用于下一代计算电路。
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来源期刊
Nano Communication Networks
Nano Communication Networks Mathematics-Applied Mathematics
CiteScore
6.00
自引率
6.90%
发文量
14
期刊介绍: The Nano Communication Networks Journal is an international, archival and multi-disciplinary journal providing a publication vehicle for complete coverage of all topics of interest to those involved in all aspects of nanoscale communication and networking. Theoretical research contributions presenting new techniques, concepts or analyses; applied contributions reporting on experiences and experiments; and tutorial and survey manuscripts are published. Nano Communication Networks is a part of the COMNET (Computer Networks) family of journals within Elsevier. The family of journals covers all aspects of networking except nanonetworking, which is the scope of this journal.
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