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N×N Clos Digital Cross-Connect Switch Using Quantum Dot Cellular Automata(QCA)
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作者 Amita Asthana Anil Kumar Preeta Sharan 《Computer Systems Science & Engineering》 SCIE EI 2023年第6期2901-2917,共17页
Quantum dot cellular automata(QCA)technology is emerging as a future technology which designs the digital circuits at quantum levels.The tech-nology has gained popularity in terms of designing digital circuits,which o... Quantum dot cellular automata(QCA)technology is emerging as a future technology which designs the digital circuits at quantum levels.The tech-nology has gained popularity in terms of designing digital circuits,which occupy very less area and less power dissipation in comparison to the present comple-mentary metal oxide semiconductor(CMOS)technology.For designing the rou-ters at quantum levels with non-blocking capabilities various multi-stage networks have been proposed.This manuscript presents the design of the N×NClos switch matrix as a multistage interconnecting network using quantum-dot cellular automata technology.The design of the Clos switch matrix presented in the article uses three input majority gates(MG).To design the 4×4 Clos switch matrix,a basic 2×2 switch architecture has been proposed as a basic mod-ule.The 2×2 switching matrix(SM)design presented in the manuscript utilizes three input majority gates.Also,the 2×2 SM has been proposed usingfive input majority gates.Two different approaches(1&2)have been presented for designing 2×2 SM usingfive input majority gates.The 2×2 SM design based on three input majority gate utilizes four zone clocking scheme to allow signal transmis-sion.Although,the clocking scheme used in 2×2 SM using three input MG and in 2×2 SM approach 1 usingfive input MG is conventional.The 2×2 SM approach 2 design,utilizes the clocking scheme in which clocks can be applied by electricfield generators easily and in turn the switch element becomes physically realizable.The simulation results conclude that the 2×2 SM is suitable for designing a 4×4 Clos network.A higher order of input-output switching matrix,supporting more number of users can utilize the proposed designs. 展开更多
关键词 quantum dot cellular automata(qca) clos switch network 2×2 switching matrix(SM) qca designer majority gate(MG)
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Analytical method for cell displacement defect quantum-dot cellular automata primitive
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作者 Vaishali Dhare Usha Mehta 《Journal of Electronic Science and Technology》 CAS CSCD 2023年第1期26-34,共9页
Quantum-dot cellular automata(QCA)is an emerging computational paradigm which can overcome scaling limitations of the existing complementary metal oxide semiconductor(CMOS)technology.The existence of defects cannot be... Quantum-dot cellular automata(QCA)is an emerging computational paradigm which can overcome scaling limitations of the existing complementary metal oxide semiconductor(CMOS)technology.The existence of defects cannot be ignored,considering the fabrication of QCA devices at the molecular level where it could alter the functionality.Therefore,defects in QCA devices need to be analyzed.So far,the simulation-based displacement defect analysis has been presented in the literature,which results in an increased demand in the corresponding mathematical model.In this paper,the displacement defect analysis of the QCA main primitive,majority voter(MV),is presented and carried out both in simulation and mathematics,where the kink energy based mathematical model is applied.The results demonstrate that this model is valid for the displacement defect in QCA MV. 展开更多
关键词 Displacement defect Kink energy Majority voter(MV) quantum-dot cellular automata (qca)
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Performance Evaluation of Efficient XOR Structures in Quantum-Dot Cellular Automata (QCA) 被引量:1
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作者 Mohammad Rafiq Beigh Mohammad Mustafa Firdous Ahmad 《Circuits and Systems》 2013年第2期147-156,共10页
Quantum-dot cellular automaton (QCA) is an emerging, promising, future generation nanoelectronic computational architecture that encodes binary information as electronic charge configuration of a cell. It is a digital... Quantum-dot cellular automaton (QCA) is an emerging, promising, future generation nanoelectronic computational architecture that encodes binary information as electronic charge configuration of a cell. It is a digital logic architecture that uses single electrons in arrays of quantum dots to perform binary operations. Fundamental unit in building of QCA circuits is a QCA cell. A QCA cell is an elementary building block which can be used to build basic gates and logic devices in QCA architectures. This paper evaluates the performance of various implementations of QCA based XOR gates and proposes various novel layouts with better performance parameters. We presented the various QCA circuit design methodology for XOR gate. These layouts show less number of crossovers and lesser cell count as compared to the conventional layouts already present in the literature. These design topologies have special functions in communication based circuit applications. They are particularly useful in phase detectors in digital circuits, arithmetic operations and error detection & correction circuits. The comparison of various circuit designs is also given. The proposed designs can be effectively used to realize more complex circuits. The simulations in the present work have been carried out using QCADesigner tool. 展开更多
关键词 Nanoelectronics quantum cellular automata (qca) MAJORITY LOGIC Combinational LOGIC XOR Gate qca DESIGNER
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Single-Bit Comparator in Quantum-Dot Cellular Automata (QCA) Technology Using Novel QCAXNOR Gates
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作者 Ali Hussien Majeed Mohd Shamian Zainal +1 位作者 Esam Alkaldy Danial Md.NorNor 《Journal of Electronic Science and Technology》 CAS CSCD 2021年第3期263-273,共11页
To fill the continuous needs for faster processing elements with less power consumption causes large pressure on the complementary metal oxide semiconductor(CMOS)technology developers.The scaling scenario is not an op... To fill the continuous needs for faster processing elements with less power consumption causes large pressure on the complementary metal oxide semiconductor(CMOS)technology developers.The scaling scenario is not an option nowadays and other technologies need to be investigated.The quantum-dot cellular automata(QCA)technology is one of the important emerging nanotechnologies that have attracted much researchers’attention in recent years.This technology has many interesting features,such as high speed,low power consumption,and small size.These features make it an appropriate alternative to the CMOS technique.This paper suggests three novel structures of XNOR gates in the QCA technology.The presented structures do not follow the conventional approaches to the logic gates design but depend on the inherent capabilities of the new technology.The proposed structures are used as the main building blocks for a single-bit comparator.The resulted circuits are simulated for the verification purpose and then compared with existing counterparts in the literature.The comparison results are encouraging to append the proposed structures to the library of QCA gates. 展开更多
关键词 NANOTECHNOLOGY quantum-dot cellular automata(qca) qca comparator XNOR gate XOR gate
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Novel Adder Circuits Based On Quantum-Dot Cellular Automata (QCA)
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作者 Firdous Ahmad Ghulam Mohiuddin Bhat Peer Zahoor Ahmad 《Circuits and Systems》 2014年第6期142-152,共11页
Quantum-dot cellular automaton (QCA) is a novel nanotechnology that provides a very different computation platform than traditional CMOS, in which polarization of electrons indicates the digital information. This pape... Quantum-dot cellular automaton (QCA) is a novel nanotechnology that provides a very different computation platform than traditional CMOS, in which polarization of electrons indicates the digital information. This paper demonstrates designing combinational circuits based on quantum-dot cellular automata (QCA) nanotechnology, which offers a way to implement logic and all interconnections with only one homogeneous layer of cells. In this paper, the authors have proposed a novel design of XOR gate. This model proves designing capabilities of combinational circuits that are compatible with QCA gates within nano-scale. Novel adder circuits such as half adders, full adders, which avoid the fore, mentioned noise paths, crossovers by careful clocking organization, have been proposed. Experiment results show that the performance of proposed designs is more efficient than conventional designs. The modular layouts are verified with the freely available QCA Designer tool. 展开更多
关键词 NOVEL ADDER CIRCUITS Based on quantum-DOT cellular automata (qca)
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A new phenomenon of quantum-dot cellular automata
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作者 曾令刚 王庆康 戴永兵 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2005年第10期1090-1094,共5页
If an external point charge and the movable charges of an isolated quantum-dot cellular automata (QCA) cell have the same polarity, the point charge greatly affects the polarization (P) of the cell only when it is in ... If an external point charge and the movable charges of an isolated quantum-dot cellular automata (QCA) cell have the same polarity, the point charge greatly affects the polarization (P) of the cell only when it is in a narrow band with periodically changing width. The center of the band is on a radius R circle. The ratio of R to the electric charge (q) is a constant determined by the parameters of the cell. A QCA cell can be used as charge detector based on the above phenomenon. 展开更多
关键词 量子论 自动控制 Hamiltonian函数 逻辑结构 静电学
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Defect and Temperature Effects on Complex Quantum-Dot Cellular Automata Devices
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作者 Mahfuza Khatun Benjamin D. Padgett +2 位作者 Gabriel A. Anduwan Ioan Sturzu Douglas Tougaw 《Journal of Applied Mathematics and Physics》 2013年第3期7-15,共9页
The authors present an analysis of the fault tolerant properties and the effects of temperature on an exclusive OR (XOR) gate and a full adder device implemented using quantum-dot cellular automata (QCA) structures. A... The authors present an analysis of the fault tolerant properties and the effects of temperature on an exclusive OR (XOR) gate and a full adder device implemented using quantum-dot cellular automata (QCA) structures. A Hubbard-type Hamiltonian and the Inter-cellular Hartree approximation have been used for modeling, and a uniform random distribution has been implemented for the simulated dot displacements within cells. We have shown characteristic features of all four possible input configurations for the XOR device. The device performance degrades significantly as the magnitude of defects and the temperature increase. Our results show that the fault-tolerant characteristics of an XOR device are highly dependent on the input configurations. The input signal that travels through the wire crossing (also called a crossover) in the central part of the device weakens the signal significantly. The presence of multiple wire crossings in the full adder design has a major impact on the functionality of the device. Even at absolute zero temperature, the effect of the dot displacement defect is very significant. We have observed that the breakdown characteristic is much more pronounced in the full adder than in any other devices under investigation. 展开更多
关键词 quantum-DOT cellular automata Thermal Effect XOR Full ADDER FAULT-TOLERANT
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The characteristics of nonlinear chaotic dynamics in quantum cellular neural networks 被引量:1
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作者 王森 蔡理 +2 位作者 康强 吴刚 李芹 《Chinese Physics B》 SCIE EI CAS CSCD 2008年第8期2837-2843,共7页
With the polarization of quantum-dot cell and quantum phase serving as state variables, this paper does both theoretical analysis and simulation for the complex nonlinear dynamical behaviour of a three-cell-coupled Qu... With the polarization of quantum-dot cell and quantum phase serving as state variables, this paper does both theoretical analysis and simulation for the complex nonlinear dynamical behaviour of a three-cell-coupled Quantum Cellular Neural Network (QCNN), including equilibrium points, bifurcation and chaotic behaviour. Different phenomena, such as quasi-periodic, chaotic and hyper-chaotic states as well as bifurcations are revealed. The system's bifurcation and chaotic behaviour under the influence of the different coupling parameters are analysed. And it finds that the unbalanced cells coupled QCNN is easy to cause chaotic oscillation and the system response enters into chaotic state from quasi-periodic state by quasi-period bifurcation; however, the balanced cells coupled QCNN also can be chaotic when coupling parameters is in some region. Additionally, both the unbalanced and balanced cells coupled QCNNs can possess hyper-chaotic behaviour. It provides valuable information about QCNNs for future application in high-parallel signal processing and novel ultra-small chaotic generators. 展开更多
关键词 quantum cellular neural network BIFURCATION CHAOS quantum cellular automata
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The Approximation of Bosonic System by Fermion in Quantum Cellular Automaton
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作者 Shinji Hamada Hideo Sekino 《Journal of Quantum Information Science》 2017年第1期6-34,共29页
In one-dimensional multiparticle Quantum Cellular Automaton (QCA), the approximation of the bosonic system by fermion (boson-fermion correspondence) can be derived in a rather simple and intriguing way, where the prin... In one-dimensional multiparticle Quantum Cellular Automaton (QCA), the approximation of the bosonic system by fermion (boson-fermion correspondence) can be derived in a rather simple and intriguing way, where the principle to impose zero-derivative boundary conditions of one-particle QCA is also analogously used in particle-exchange boundary conditions. As a clear cut demonstration of this approximation, we calculate the ground state of few-particle systems in a box using imaginary time evolution simulation in 2nd quantization form as well as in 1st quantization form. Moreover in this 2nd quantized form of QCA calculation, we use Time Evolving Block Decimation (TEBD) algorithm. We present this demonstration to emphasize that the TEBD is most natu-rally regarded as an approximation method to the 2nd quantized form of QCA. 展开更多
关键词 quantum cellular AUTOMATON qca quantum Walk BOSON-FERMION Correspondence Time Evolving Block DECIMATION TEBD Dirac cellular AUTOMATON
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一种针对QCA电路自动布局布线的混合策略研究
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作者 李杨帅 彭斐 +2 位作者 韩倩 李小帅 解光军 《电子学报》 EI CAS CSCD 北大核心 2023年第3期666-674,共9页
量子元胞自动机(Quantum Cellular Automata,QCA)电路的自动布局布线是在相关约束条件下自动放置电路单元、自动形成连线,实现门级或元胞级电路的设计过程,是QCA电路设计大型化、复杂化和系统化的必要工具.布局布线算法设计过程中最大... 量子元胞自动机(Quantum Cellular Automata,QCA)电路的自动布局布线是在相关约束条件下自动放置电路单元、自动形成连线,实现门级或元胞级电路的设计过程,是QCA电路设计大型化、复杂化和系统化的必要工具.布局布线算法设计过程中最大的难题是如何解决“时钟同步”,随着二维时钟方案提出,该问题的解决方案变得更加策略化,但仍存在诸多缺陷,如成功率低,布局面积较大等.本文将二维时钟方案的布局布线问题抽象成组合优化模型,提出了一种基于遗传算法GA(Genetic Algorithm)和改进A^(*)算法的混合策略.两种算法相互配合搭建可能的电路布局,并通过精心设计的适应度函数,搜索满足时钟同步的个体,最终实现从硬件电路到二维时钟方案上的门级布局.实验结果表明,本算法在目前被广泛应用的二维时钟方案USE(Universal,Scalable and Efficient)上的布局成功率接近100%.相较当前世界上最先进的两个QCA布局布线工具fiction和Ropper,本算法可适用电路规模更大(逻辑门数量大于10),在成功率和生成布局面积上都有大幅度的优化. 展开更多
关键词 元胞自动机 布局布线 组合优化 遗传算法 A^(*)算法
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一位QCA数值比较器的可靠性研究 被引量:4
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作者 黄宏图 蔡理 +3 位作者 彭卫东 柏鹏 杨晓阔 李政操 《微纳电子技术》 CAS 北大核心 2011年第5期291-295,共5页
针对量子元胞自动机电路中存在的元胞移位、元胞未对准、元胞遗漏、元胞旋转等固有缺陷,采用概率转移矩阵方法建立了一位QCA数值比较器的可靠性模型,并对其可靠性进行了深入分析。对于不同的输入,分别比较了各组成元件在同样的故障概率... 针对量子元胞自动机电路中存在的元胞移位、元胞未对准、元胞遗漏、元胞旋转等固有缺陷,采用概率转移矩阵方法建立了一位QCA数值比较器的可靠性模型,并对其可靠性进行了深入分析。对于不同的输入,分别比较了各组成元件在同样的故障概率水平下对整体可靠性(正确输出的概率)的不同影响。仿真结果表明,在所有的输入情况下传输线始终是影响其可靠性的主要因素,从而确定了传输线在该数值比较器中的重要性,进而为大规模QCA数值比较器的设计以及可靠性的提高提供了依据。 展开更多
关键词 概率转移矩阵 电路分割 量子元胞自动机 数值比较器 可靠性
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多元线性回归分析在QCA数值比较器可靠性研究中的应用 被引量:1
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作者 黄宏图 蔡理 +4 位作者 彭卫东 柏鹏 杨晓阔 刘保军 李政操 《固体电子学研究与进展》 CAS CSCD 北大核心 2011年第5期460-463,共4页
基于概率转移矩阵方法建立了QCA数值比较器的可靠性模型,采用多元线性回归方法定量分析了QCA数值比较器中各组成元件对整体可靠性的不同影响,并比较了元件可靠性改善度对整体可靠性改善度的不同影响。结果表明,当传输线可靠性改善度为3.... 基于概率转移矩阵方法建立了QCA数值比较器的可靠性模型,采用多元线性回归方法定量分析了QCA数值比较器中各组成元件对整体可靠性的不同影响,并比较了元件可靠性改善度对整体可靠性改善度的不同影响。结果表明,当传输线可靠性改善度为3.00%时,整体可靠性改善度为16.51%,远高于其它元件,从而为大规模QCA数值比较器电路的可靠性设计提供了依据。 展开更多
关键词 多元线性回归 概率转移矩阵 量子元胞自动机 数值比较器 可靠性
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基于概率模型的QCA触发器可靠性研究 被引量:1
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作者 黄宏图 蔡理 +1 位作者 杨晓阔 李政操 《固体电子学研究与进展》 CAS CSCD 北大核心 2012年第2期126-130,共5页
通过将时序逻辑电路中的反馈回路打开,在原有电路结构的基础上增加一路输入,采用概率转移矩阵方法建立了基于QCA的RS触发器、D触发器、JK触发器的可靠性模型,深入研究了各组成元件对其可靠性影响的差异,从而为其可靠性的提高提供了依据... 通过将时序逻辑电路中的反馈回路打开,在原有电路结构的基础上增加一路输入,采用概率转移矩阵方法建立了基于QCA的RS触发器、D触发器、JK触发器的可靠性模型,深入研究了各组成元件对其可靠性影响的差异,从而为其可靠性的提高提供了依据,这对于高缺陷率的QCA电路的可靠性设计具有重要的指导意义。 展开更多
关键词 量子元胞自动机 时序逻辑电路 触发器 概率转移矩阵 可靠性 元胞缺陷
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QCA电路的缺陷研究
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作者 黄宏图 蔡理 李政操 《微纳电子技术》 CAS 北大核心 2012年第3期147-151,共5页
针对量子元胞自动机电路中出现的元胞移位等元胞缺陷,介绍了基于QCADesigner的元胞缺陷分析,得出了特定结构的容错范围。对于制造过程出现的单电子故障,分析了不同输入时单电子故障对传输线和反相器的影响。对于制造过程中出现的漂移电... 针对量子元胞自动机电路中出现的元胞移位等元胞缺陷,介绍了基于QCADesigner的元胞缺陷分析,得出了特定结构的容错范围。对于制造过程出现的单电子故障,分析了不同输入时单电子故障对传输线和反相器的影响。对于制造过程中出现的漂移电荷缺陷,分析了这些缺陷对传输线的影响。通过改变元胞与传输线之间的距离,研究了QCA传输线之间的串扰问题,得出了其容错范围。最后对RS触发器中出现的元胞缺陷采用测试序列进行了分析研究,从而为进一步研究QCA电路的缺陷提供了依据和方向。 展开更多
关键词 量子元胞自动机(qca) 元胞缺陷 单电子故障 漂移电荷 串扰
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基于贝叶斯模型的QCA扇出结构转换特性
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作者 陈祥叶 蔡理 +2 位作者 王森 崔焕卿 汪志春 《微纳电子技术》 北大核心 2014年第2期73-77,共5页
基于半径为2的贝叶斯模型,量化分析了量子元胞自动机(QCA)扇出结构的转换特性。分析表明,采用半径为1的贝叶斯模型进行QCA转换特性分析将导致传输线正确概率的误差增大到40%,而半径为2的贝叶斯模型平衡了运算量和计算精度,适用于QCA的... 基于半径为2的贝叶斯模型,量化分析了量子元胞自动机(QCA)扇出结构的转换特性。分析表明,采用半径为1的贝叶斯模型进行QCA转换特性分析将导致传输线正确概率的误差增大到40%,而半径为2的贝叶斯模型平衡了运算量和计算精度,适用于QCA的可靠性分析。仿真表明,扇出结构的正确概率随元胞尺寸和元胞间距的增大而逐渐降低,也随着输入条件和输出端的不同而改变,输入为‘1’时,扇出的拐角输出端的正确概率高于85%,而输入为‘0’时,拐角输出端的正确概率低于20%。这是由于QCA是一种基于量子机理进行工作的器件,不同的输入或不同的元胞尺寸和元胞间距都将造成元胞扭结能的改变,进而影响元胞的翻转概率。研究所得结论可为今后QCA的电路实现与设计和可靠性分析提供参考。 展开更多
关键词 量子元胞自动机(qca) 扇出 贝叶斯模型 转换特性 正确概率
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基于QCA可编程逻辑阵列单元的元胞缺陷研究
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作者 李政操 蔡理 黄宏图 《微纳电子技术》 CAS 北大核心 2012年第4期222-227,共6页
介绍了一种量子元胞自动机(QCA)可编程逻辑阵列结构,该结构可用于实现量子元胞自动机大规模可编程逻辑电路,采用QCADesigner仿真软件研究了元胞缺失、移位缺陷和未对准缺陷对可编程逻辑阵列单元逻辑功能的影响。得出了特定结构下,每个... 介绍了一种量子元胞自动机(QCA)可编程逻辑阵列结构,该结构可用于实现量子元胞自动机大规模可编程逻辑电路,采用QCADesigner仿真软件研究了元胞缺失、移位缺陷和未对准缺陷对可编程逻辑阵列单元逻辑功能的影响。得出了特定结构下,每个元胞移位缺陷和未对准缺陷的最大错位距离,以及导线模式中存在特定位置的8个可缺失元胞。这为缺陷单元的应用提供了一个具体的参数标准,提高了PLA阵列的单元利用率。 展开更多
关键词 量子元胞自动机(qca) 可编程逻辑阵列(PLA) 元胞缺失 移位缺陷 未对准缺陷
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基于量子元胞自动机的n位全加器设计
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作者 张辉 解光军 张永强 《电子学报》 EI CAS CSCD 北大核心 2024年第2期626-632,共7页
量子元胞自动机(Quantum-dot Cellular Automata,QCA)以其功耗低、纳米级设计、运算速度高等特点被认为是一门新兴技术,在不久的将来有望取代CMOS工艺,用于量子计算机的电路设计.近年来,在QCA电路中有很多使用三输入择多门(M3)和三输入... 量子元胞自动机(Quantum-dot Cellular Automata,QCA)以其功耗低、纳米级设计、运算速度高等特点被认为是一门新兴技术,在不久的将来有望取代CMOS工艺,用于量子计算机的电路设计.近年来,在QCA电路中有很多使用三输入择多门(M3)和三输入异或门(XOR^(3))设计的全加器(Full Adder,FA).本文以这两种逻辑门为基础,结合QCA电路特有的时钟特点,设计了三种新型的n位全加器(FA1,FA2,FA3).FA1只使用了一个1位全加器,它的元胞的数量和电路面积比已发表的8位全加器至少减少了78%和90%,但一个时钟周期只能完成1位计算,延迟较大;FA2的元胞的数量和电路面积比已发表的8位全加器至少减少了47%和63%,可以在一个时钟周期内完成2位计算;FA3在一个时钟周期内可以进行4位计算,延迟最小.FA1、FA2和FA3作为n位全加器,随着全加器位数的增加,它们的元胞的数量和电路面积是不会改变的,这是以往设计所不能实现的. 展开更多
关键词 量子元胞自动机 全加器 三输入择多门 三输入异或门 时钟延迟
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改进型QCA共面交叉电路的可靠性分析 被引量:2
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作者 岳洋洋 解光军 吕洪君 《微纳电子技术》 CAS 北大核心 2012年第6期369-374,共6页
针对量子元胞自动机(QCA)电路中电路单元复杂化能提高电路可靠性的假设,采用概率转移矩阵对一种改进后的QCA共面交叉电路单元及原始电路单元的可靠性进行对比分析,以检验复杂化设计能否提高电路可靠性,并利用四选一数据选择器进行深入... 针对量子元胞自动机(QCA)电路中电路单元复杂化能提高电路可靠性的假设,采用概率转移矩阵对一种改进后的QCA共面交叉电路单元及原始电路单元的可靠性进行对比分析,以检验复杂化设计能否提高电路可靠性,并利用四选一数据选择器进行深入研究以验证分析结果。仿真结果表明,该改进方案将共面交叉电路单元应用于单独运行及组合电路中分别使电路的可靠性降低了19.6%和0.84%。改进后的电路单元不但没有提高可靠性,反而由于电路结构的复杂化降低了其可靠性。 展开更多
关键词 量子元胞自动机(qca) 概率转移矩阵 共面交叉 数据选择器 可靠性
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Low-power, high-speed, and area-efficient sequential circuits by quantum-dot cellular automata: T-latch and counter study
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作者 Mohammad GHOLAMI Zaman AMIRZADEH 《Frontiers of Information Technology & Electronic Engineering》 SCIE EI CSCD 2023年第3期457-469,共13页
Quantum-dot cellular automata(QCA)is a new nanotechnology for the implementation of nano-sized digital circuits.This nanotechnology is remarkable in terms of speed,area,and power consumption compared to complementary ... Quantum-dot cellular automata(QCA)is a new nanotechnology for the implementation of nano-sized digital circuits.This nanotechnology is remarkable in terms of speed,area,and power consumption compared to complementary metal-oxide-semiconductor(CMOS)technology and can significantly improve the design of various logic circuits.We propose a new method for implementing a T-latch in QCA technology in this paper.The proposed method uses the intrinsic features of QCA in timing and clock phases,and therefore,the proposed cell structure is less occupied and less power-consuming than existing implementation methods.In the proposed T-latch,compared to previous best designs,reductions of 6.45%in area occupation and 44.49%in power consumption were achieved.In addition,for the first time,a reset-based T-latch and a T-latch with set and reset capabilities are designed.Using the proposed T-latch,a new 3-bit counter is developed which reduces 2.14%cell numbers compared to the best of previous designs.Moreover,based on the 3-bit counter,a 4-bit counter is designed,which reduces 0.51%cell numbers and 4.16%cross-section area compared to previous designs.In addition,two selective counters are introduced to count from 0 to 5 and from 2 to 5.Simulations were performed using QCADesigner and QCAPro tools in coherence vector engine mode.The proposed circuits are compared with related designs in terms of delay,cell numbers,area,and leakage power. 展开更多
关键词 quantum-dot cellular automata(qca) quantum-DOT T-latch T-flip-flop COUNTER Selective counter qcaDesigner qcaPro
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Nano-design of ultra-efficient reversible block based on quantum-dot cellular automata
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作者 Seyed Sajad AHMADPOUR Nima Jafari NAVIMIPOUR +1 位作者 Mohammad MOSLEH Senay YALCIN 《Frontiers of Information Technology & Electronic Engineering》 SCIE EI CSCD 2023年第3期447-456,共10页
Reversible logic has recently gained significant interest due to its inherent ability to reduce energy dissipation,which is the primary need for low-power digital circuits.One of the newest areas of relevant study is ... Reversible logic has recently gained significant interest due to its inherent ability to reduce energy dissipation,which is the primary need for low-power digital circuits.One of the newest areas of relevant study is reversible logic,which has applications in many areas,including nanotechnology,DNA computing,quantum computing,fault tolerance,and low-power complementary metal-oxide-semiconductor(CMOS).An electrical circuit is classified as reversible if it has an equal number of inputs and outputs,and a one-to-one relationship.A reversible circuit is conservative if the EXOR of the inputs and the EXOR of the outputs are equivalent.In addition,quantum-dot cellular automata(QCA)is one of the state-of-the-art approaches that can be used as an alternative to traditional technologies.Hence,we propose an efficient conservative gate with low power demand and high speed in this paper.First,we present a reversible gate called ANG(Ahmadpour Navimipour Gate).Then,two non-resistant QCA ANG and reversible fault-tolerant ANG structures are implemented in QCA technology.The suggested reversible gate is realized through the Miller algorithm.Subsequently,reversible fault-tolerant ANG is implemented by the 2DW clocking scheme.Furthermore,the power consumption of the suggested ANG is assessed under different energy ranges(0.5Ek,1.0Ek,and 1.5Ek).Simulations of the structures and analysis of their power consumption are performed using QCADesigner 2.0.03 and QCAPro software.The proposed gate shows great improvements compared to recent designs. 展开更多
关键词 NANOTECHNOLOGY Reversible logic Energy dissipation quantum-dot cellular automata(qca) Reversible gate Miller algorithm
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