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Design of Reversible Gate-Based Fingerprint Authentication System in Quantum-Dot Cellular Automata for Secure Nanocomputing

机译:Quantum-Dot蜂窝自动机中可逆栅极的指纹认证系统的设计,用于安全纳米电脑

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The issues faced by CMOS technology in the nanoregime has led to the research of other possible technologies which can operate with same functionalities, however, with higher speed and lower power dissipation. One such technology is quantum-dot cellular automata (QCA). In this paper, QCA and reversible logic have been combined to design a 2 × 2 Feynman reversible gate-based fingerprint authentication system (FSA). An 8 × 8 size input fingerprint image is compared with the images present in the database and upon successful match, the FSA gives a n output of logic ' 1' to confirm the match. Based on the performance analysis, it is shown that the proposed design achieves performance improvement of up to 89.05% compared to the previously reported design with respect to various parameters such as cell count, area, quantum cost, etc.
机译:CMOS技术面临的问题在纳米报道中导致了对其他可能技术的研究,这些技术可以以相同的功能操作,但是,具有更高的速度和较低的功耗。 一种这样的技术是量子点蜂窝自动机(QCA)。 在本文中,QCA和可逆逻辑已组合为设计2×2 Feynman可逆门的指纹认证系统(FSA)。 将8×8尺寸输入指纹图像与数据库中存在的图像进行比较,并且在成功匹配时,FSA给出了逻辑'1'的N输出以确认匹配。 基于性能分析,拟议的设计与先前报告的各种参数相比,拟议的设计能够实现高达89.05%的性能,例如细胞计数,面积,量子成本等的各种参数。

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