当前美国国家标准与技术研究院(National Institute of Standards and Technology,NIST)对后量子密码(Post-Quantum Cryptography,PQC)标准化方案的评估已进入第四轮,位翻转密钥封装(Bit Flipping Key Encapsulation,BIKE)协议是目前被...当前美国国家标准与技术研究院(National Institute of Standards and Technology,NIST)对后量子密码(Post-Quantum Cryptography,PQC)标准化方案的评估已进入第四轮,位翻转密钥封装(Bit Flipping Key Encapsulation,BIKE)协议是目前被评估的四个候选方案之一.在BIKE的密钥生成算法中,多项式乘法作为众多密码系统中特别耗时的操作之一,耗费了大量的时间和面积资源.针对此问题,本文设计了一种基于Karatsuba算法(Karatsuba Algorithm,KA)的无交叠多项式乘法器,可高效实现万级比特位宽的多项式乘法,具有低时延、高性能和面积小的特点.同时,本文将该优化乘法器应用于BIKE密钥生成算法中,并基于现场可编程门阵列(Field Programmable Gate Array,FPGA)对其进行硬件架构实现,改进了原有的紧凑多项式乘法和多项式求逆算法.本文提出的乘法器通过采用不同的操作数位宽,可适应对面积和延时的不同需求.与BIKE原本的设计相比,改进的设计使密钥生成模块的延时减小了36.54%,面积延迟积(Area Delay Production,ADP)减小了10.4%.展开更多
Attribute reduction in the rough set theory is an important feature selection method, but finding a minimum attribute reduction has been proven to be a non-deterministic polynomial (NP)-hard problem. Therefore, it i...Attribute reduction in the rough set theory is an important feature selection method, but finding a minimum attribute reduction has been proven to be a non-deterministic polynomial (NP)-hard problem. Therefore, it is necessary to investigate some fast and effective approximate algorithms. A novel and enhanced quantum-inspired shuffled frog leaping based minimum attribute reduction algorithm (QSFLAR) is proposed. Evolutionary frogs are represented by multi-state quantum bits, and both quantum rotation gate and quantum mutation operators are used to exploit the mechanisms of frog population diversity and convergence to the global optimum. The decomposed attribute subsets are co-evolved by the elitist frogs with a quantum-inspired shuffled frog leaping algorithm. The experimental results validate the better feasibility and effectiveness of QSFLAR, comparing with some representa- tive algorithms. Therefore, QSFLAR can be considered as a more competitive algorithm on the efficiency and accuracy for minimum attribute reduction.展开更多
We analyze the development of quantum cryptography communication,including analyze the problems lie in the existent literatures and give the resolve methods according to these problems.Then discuss the quantum cryptog...We analyze the development of quantum cryptography communication,including analyze the problems lie in the existent literatures and give the resolve methods according to these problems.Then discuss the quantum cryptography communication for wireless networks and also point out the shortcoming of current research and the future of quantum wireless networks.展开更多
一般的量子图像加密算法虽然能达到加密效果,但需要的量子比特数较多,计算复杂度较高,为优化这一问题,提出了一种位平面分解的量子彩色图像加密方案。首先,采用一种位平面序信息单独编码的彩色数字图像量子表示模型(quantum representat...一般的量子图像加密算法虽然能达到加密效果,但需要的量子比特数较多,计算复杂度较高,为优化这一问题,提出了一种位平面分解的量子彩色图像加密方案。首先,采用一种位平面序信息单独编码的彩色数字图像量子表示模型(quantum representation model of color digital image,QRCI)来表示图像,利用量子交换门设计一种量子位交换操作,并作用于彩色图像中,对图像像素进行置乱,同时再对图像进行颜色通道交换操作。其次,对位平面序列进行反序操作,进一步加强置乱效果。接着,利用安全散列算法(secure hash algorithm 256,SHA-256)产生的哈希值来确定混沌系统的初始值。最后,利用混沌系统产生的序列对图像进行扩散,完成加密过程,形成加密图像。数值分析表明,相较于以往的加密方案,此方案大大降低了彩色图像存储时所需的量子比特位数,同时其密钥空间大,灵敏度高。仿真结果表明,该方案加密效果好,能抵御大部分常见的攻击。展开更多
基金supported by the National Natural Science Foundation of China(6113900261171132)+4 种基金the Funding of Jiangsu Innovation Program for Graduate Education(CXZZ11 0219)the Natural Science Foundation of Jiangsu Education Department(12KJB520013)the Applying Study Foundation of Nantong(BK2011062)the Open Project Program of State Key Laboratory for Novel Software Technology,Nanjing University(KFKT2012B28)the Natural Science Pre-Research Foundation of Nantong University(12ZY016)
文摘Attribute reduction in the rough set theory is an important feature selection method, but finding a minimum attribute reduction has been proven to be a non-deterministic polynomial (NP)-hard problem. Therefore, it is necessary to investigate some fast and effective approximate algorithms. A novel and enhanced quantum-inspired shuffled frog leaping based minimum attribute reduction algorithm (QSFLAR) is proposed. Evolutionary frogs are represented by multi-state quantum bits, and both quantum rotation gate and quantum mutation operators are used to exploit the mechanisms of frog population diversity and convergence to the global optimum. The decomposed attribute subsets are co-evolved by the elitist frogs with a quantum-inspired shuffled frog leaping algorithm. The experimental results validate the better feasibility and effectiveness of QSFLAR, comparing with some representa- tive algorithms. Therefore, QSFLAR can be considered as a more competitive algorithm on the efficiency and accuracy for minimum attribute reduction.
基金supported by the National High Technology Research and Development Program of China(863 Program)(No. 2006AA01Z208)Nataral Sci-ence Foundation of Jiangsu Province(No. BK2007236)Six Projects Sponsoring Talent Summits of Jiangsu Province(No. SJ207001)
文摘We analyze the development of quantum cryptography communication,including analyze the problems lie in the existent literatures and give the resolve methods according to these problems.Then discuss the quantum cryptography communication for wireless networks and also point out the shortcoming of current research and the future of quantum wireless networks.
文摘一般的量子图像加密算法虽然能达到加密效果,但需要的量子比特数较多,计算复杂度较高,为优化这一问题,提出了一种位平面分解的量子彩色图像加密方案。首先,采用一种位平面序信息单独编码的彩色数字图像量子表示模型(quantum representation model of color digital image,QRCI)来表示图像,利用量子交换门设计一种量子位交换操作,并作用于彩色图像中,对图像像素进行置乱,同时再对图像进行颜色通道交换操作。其次,对位平面序列进行反序操作,进一步加强置乱效果。接着,利用安全散列算法(secure hash algorithm 256,SHA-256)产生的哈希值来确定混沌系统的初始值。最后,利用混沌系统产生的序列对图像进行扩散,完成加密过程,形成加密图像。数值分析表明,相较于以往的加密方案,此方案大大降低了彩色图像存储时所需的量子比特位数,同时其密钥空间大,灵敏度高。仿真结果表明,该方案加密效果好,能抵御大部分常见的攻击。
基金Supported by The National Natural Science Foundation of China(No.60807014)the Natural Science Foundation of Jiangxi Province,China(No.2009GZW0005)the Research Foundation of State Key Laboratory of Advanced Optical Communication Systems and Networks,and the Research Foundation of the Education Depart ment of Jiangxi Province,China(No.GJJ09153)