一种新的基于量子计算的纳米级认证体系结构,用于提高人机交互系统的安全性

IF 1.4 4区 工程技术 Q4 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE
Seyed-Sajad Ahmadpour, Muhammad Zohaib, Nima Jafari Navimipour, Neeraj Kumar Misra, Hadi Rasmi, Huseyn Salahov, Danial Bakhshayeshi Avval, Ahmad Habibizad Navin, Mehdi Hosseinzadeh
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引用次数: 0

摘要

人机交互(HCI)是一个跨学科的研究领域,通过设计交互式计算机接口来关注用户和计算机的交互。此外,HCI系统需要安全性来确认用户身份验证,这在这些系统中是一个关键问题。因此,用户身份验证至关重要,它只允许经过授权的用户访问数据。身份验证对数字世界至关重要,因为它为数字数据提供了安全性。此外,数字签名是一种确认数字文档或数字通信的准确性和可靠性的认证方法。此外,基于互补金属氧化物半导体(CMOS)技术设计电路,由于电路散热过多,会影响数字数据的安全性。另一方面,量子点元胞自动机(QCA)和可逆逻辑作为CMOS的替代技术解决了这些问题。由于QCA和可逆逻辑电路具有最小的能量耗散,被认为几乎为零,接近这些技术对任何黑客来说都是极其困难的。这项工作提出了一个有效的结构,验证者和人机交互使用QCA和IBM量子计算与Qiskit模拟。所提出的结构在面积、细胞数量和延迟方面优于现有电路。本文演示了所提出的HCI认证器的QCA可逆逻辑布局,并使用Qiskit集成IBM量子计算模拟进行验证。利用qcaddesigner -2.0.3和Qiskit仿真工具对结果进行了实现和测试。通过仿真推导的比较值验证了所提设计的准确性和效率,能量耗散仿真证明所提电路耗散能量最小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A new nano-scale authentication architecture for improving the security of human-computer interaction systems based on quantum computing

A new nano-scale authentication architecture for improving the security of human-computer interaction systems based on quantum computing

Human-Computer Interaction (HCI) is an interdisciplinary area of study focusing on the interaction of users and computers by scheming interactive computer interfaces. In addition, HCI systems need security to confirm user authentication, which is a crucial issue in these systems. Hence, user authentication is vital, allowing only authorized users to access data. Authentication is critical to the digital world since it provides security and safety for digital data. Moreover, a digital signature is an authentication method to confirm the accuracy and reliability of digital documents or communications. In addition, designing the circuit based on the complementary metal-oxide semiconductor (CMOS) technology can affect the security and safety of digital data due to the excessive heat dissipation of circuits. On the other hand, quantum-dot cellular automata (QCA) and reversible logic as alternative technologies to CMOS address these problems. Since QCA and reversible logic circuits have minimal energy dissipation, which is considered nearly zero, approaching these technologies proves extremely difficult for any hacker. This work presents an effective structure for the authenticator and human-computer interaction using QCA and IBM quantum computing with Qiskit simulations. The proposed structure has outperformed current circuits in terms of area, cell count, and latency. The paper demonstrates the QCA reversible logic layout of the proposed HCI authenticator and integrates IBM quantum computing simulations using Qiskit for validation. The implementation and testing of results are performed utilizing QCADesigner-2.0.3 and Qiskit simulation tools. The accuracy and efficiency of the proposed design are validated through simulation-derived comparison values, and energy dissipation simulations prove that the suggested circuit dissipates minimal energy.

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来源期刊
Analog Integrated Circuits and Signal Processing
Analog Integrated Circuits and Signal Processing 工程技术-工程:电子与电气
CiteScore
0.30
自引率
7.10%
发文量
141
审稿时长
7.3 months
期刊介绍: Analog Integrated Circuits and Signal Processing is an archival peer reviewed journal dedicated to the design and application of analog, radio frequency (RF), and mixed signal integrated circuits (ICs) as well as signal processing circuits and systems. It features both new research results and tutorial views and reflects the large volume of cutting-edge research activity in the worldwide field today. A partial list of topics includes analog and mixed signal interface circuits and systems; analog and RFIC design; data converters; active-RC, switched-capacitor, and continuous-time integrated filters; mixed analog/digital VLSI systems; wireless radio transceivers; clock and data recovery circuits; and high speed optoelectronic circuits and systems.
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