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A novel design of nano router with high-speed crossbar scheduler for digital systems in QCA paradigm
Circuit World ( IF 0.9 ) Pub Date : 2021-07-26 , DOI: 10.1108/cw-10-2020-0280
Kalpana Kasilingam 1 , Paulchamy Balaiah 1
Affiliation  

Purpose

The nano-router would be a mastery device for providing high-speed data delivery. Here nano-router with a space-efficient crossbar scheduler is used for making absolutely less consumption in power.

Design/methodology/approach

In the emerging modern technology, every one of us is expecting a delivery of data at a high speed. To achieve high-speed delivery the authors are using the router. The router used here is at nanoscale reading which provides a compact size.

Findings

This can be implemented using the modern tools called Quantum-dot Cellular Automata (QCA) which is operated without the use of a transistor. As conventional complementary metal oxide semiconductor (CMOS) designs have some limitations such as low density, high power consumption and requirement of a large area.

Research limitations/implications

To overcome these limitations the QCA is used. It characterizes capability is used to substituting CMOS technology. The round-robin fashion is used in a high-speed space-efficient crossbar scheduler.

Practical implications

The simulation of the planned circuit with notional information established the practical identity of the scheme.

Social implications

The proposed nano router can be stimulated in the QCA environment using the QCADesigner tool and the power of the router can be calculated with the QCADesigner–E tool.

Originality/value

The proposed nano router can be stimulated in the QCA environment using the QCADesigner tool and the power of the router can be calculated with the QCADesigner–E tool. In this work, the performance of the router can be done in both the QCA environment and CMOS technology.



中文翻译:

用于 QCA 范式的数字系统的具有高速交叉调度器的纳米路由器的新颖设计

目的

纳米路由器将成为提供高速数据传输的主控设备。这里使用具有节省空间的交叉调度程序的纳米路由器来绝对减少功耗。

设计/方法/途径

在新兴的现代科技中,我们每个人都期待着数据的高速传递。为了实现高速交付,作者正在使用路由器。此处使用的路由器处于纳米级读数,可提供紧凑的尺寸。

发现

这可以使用称为量子点元胞自动机 (QCA) 的现代工具来实现,该工具无需使用晶体管即可运行。由于传统的互补金属氧化物半导体 (CMOS) 设计存在一些局限性,例如低密度、高功耗和大面积要求。

研究局限性/影响

为了克服这些限制,使用了 QCA。它的表征能力用于替代CMOS技术。循环方式用于高速节省空间的交叉调度程序。

实际影响

使用概念信息对规划的电路进行仿真,确定了该方案的实际身份。

社会影响

可以使用 QCADesigner 工具在 QCA 环境中模拟所提出的纳米路由器,并且可以使用 QCADesigner–E 工具计算路由器的功率。

原创性/价值

可以使用 QCADesigner 工具在 QCA 环境中模拟所提出的纳米路由器,并且可以使用 QCADesigner–E 工具计算路由器的功率。在这项工作中,路由器的性能可以在 QCA 环境和 CMOS 技术中完成。

更新日期:2021-07-26
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