Introducing an optimal QCA crossbar switch for baseline network

IF 0.6 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC Facta Universitatis-Series Electronics and Energetics Pub Date : 2021-01-01 DOI:10.2298/fuee2103445s
R. Sabbaghi‐Nadooshan
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引用次数: 4

Abstract

Crossbar switch is the basic component in multi-stage interconnection networks. Therefore, this study was conducted to investigate performance of a crossbar switch with two multiplexers. The presented crossbar switch was simulated using quantum-dot cellular automata (QCA) technology and QCA Designer software, and was studied and optimized in terms of cell number, occupied area, number of clocks, and energy consumption. Using the provided crossbar switch, the baseline network was designed to be optimal in terms of cell number and occupied area. Also, the number of input states was investigated and simulated to verify accuracy of the baseline network. The proposed crossbar switch uses 62 QCA cells and the occupied area by the switch is equal to 0.06?m2 and its latency equals 4 clock zones, which is more efficient than the other designs. In this paper, using the presented crossbar switch, the baseline network was designed with 1713 cells, and occupied area of 2.89?m2.
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介绍了一种用于基线网络的最优QCA交叉开关
横排交换机是多级互连网络的基本组成部分。因此,本研究旨在研究具有两个多路复用器的交叉开关的性能。采用量子点元胞自动机(QCA)技术和QCA Designer软件对所设计的横杆开关进行了仿真,并从单元数、占用面积、时钟数和能耗等方面进行了研究和优化。利用所提供的交叉开关,基线网络在小区数量和占用面积方面被设计为最优。同时,对输入状态的数量进行了研究和仿真,验证了基线网络的准确性。所建议的横杆开关使用62个QCA单元,该开关占用的面积为0.06?它的延迟等于4个时钟区,比其他设计效率更高。本文采用所提出的横条开关,设计了1713个小区的基线网络,占地面积为2.89?m2。
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来源期刊
Facta Universitatis-Series Electronics and Energetics
Facta Universitatis-Series Electronics and Energetics ENGINEERING, ELECTRICAL & ELECTRONIC-
自引率
16.70%
发文量
10
审稿时长
20 weeks
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