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基于混沌占空置乱和DNA编码的图像加密算法 被引量:6
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作者 王光义 任国瑞 +1 位作者 崔明章 蔡博振 《计算机应用与软件》 CSCD 2016年第6期298-302,共5页
为了增强加密图像的安全性,提出一种新的基于混沌占空置乱和DNA编码的图像加密算法。首先根据一种离散混沌映射产生的伪随机序列使用占空法对图像矩阵的行和列进行随机交换,相比一般的混沌置乱大大提高了运算速度。然后利用另一种离散... 为了增强加密图像的安全性,提出一种新的基于混沌占空置乱和DNA编码的图像加密算法。首先根据一种离散混沌映射产生的伪随机序列使用占空法对图像矩阵的行和列进行随机交换,相比一般的混沌置乱大大提高了运算速度。然后利用另一种离散混沌映射产生两个伪随机序列分别对图像矩阵的前n行像素点和其余像素点进行异或运算生成加密图像。最后利用DNA编码规则,对图像矩阵中像素点灰度值的每两位二进制位分别进行对应的互补替换,达到图像扩散的目的,最终生成加密后的图像。对算法的统计特性、密钥敏感性及密钥空间进行仿真验证与分析,对算法的复杂性进行理论分析,分析结果显示该算法具有较高的安全性。 展开更多
关键词 混沌占空置乱 DNA编码 图像加密 安全性分析
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Memcapacitor model and its application in a chaotic oscillator 被引量:1
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作者 王光义 蔡博振 +1 位作者 靳培培 胡体玲 《Chinese Physics B》 SCIE EI CAS CSCD 2016年第1期489-500,共12页
A memcapacitor is a new type of memory capacitor. Before the advent of practical memcapacitor, the prospective studies on its models and potential applications are of importance. For this purpose, we establish a mathe... A memcapacitor is a new type of memory capacitor. Before the advent of practical memcapacitor, the prospective studies on its models and potential applications are of importance. For this purpose, we establish a mathematical memca- pacitor model and a corresponding circuit model. As a potential application, based on the model, a memcapacitor oscillator is designed, with its basic dynamic characteristics analyzed theoretically and experimentally. Some circuit variables such as charge, flux, and integral of charge, which are difficult to measure, are observed and measured via simulations and exper- iments. Analysis results show that besides the typical period-doubling bifurcations and period-3 windows, sustained chaos with constant Lyapunov exponents occurs. Moreover, this oscillator also exhibits abrupt chaos and some novel bifurcations. In addition, based on the digital signal processing (DSP) technology, a scheme of digitally realizing this memcapacitor os- cillator is provided. Then the statistical properties of the chaotic sequences generated from the oscillator are tested by using the test suit of the National Institute of Standards and Technology (NIST). The tested randomness definitely reaches the standards of NIST, and is better than that of the well-known Lorenz system. 展开更多
关键词 memcapacitor OSCILLATOR CHAOS statistical test
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