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首页> 外文期刊>Progress in Artificial Intelligence >Design and Implementation of a Digital Dual Orthogonal Outputs Chaotic Oscillator
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Design and Implementation of a Digital Dual Orthogonal Outputs Chaotic Oscillator

机译:数字双正交输出混沌振荡器的设计与实现

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Discrete time dynamical chaotic systems obey a set of recurrence equations involving one or more variables. Many chaotic maps have been proposed. None that simultaneously provides two sine-cosine outputs has stationary mean and standard deviation, or is quite robust with respect to the data format used in the hardware implementation. Here, we propose a chaotic oscillator based on a complex phasor whose angular argument evolves according to a geometric progression that is independent of the instantaneous amplitude. In order to maintain the oscillations, the phasor magnitude is normalized at each iteration using an approximation factor. The statistical characteristics of this oscillator are stationary in the short term, and do not depend on the initial conditions. The mean and standard deviation of the two orthogonal sequences quickly approach 0 and 1/root 2, respectively. The resulting distribution is similar to that of a digital sine with a constant angular step. We also present an FPGA architecture and its implementation results. This oscillator can be used in modulation schemes, such as the chaotic shift keying one or for data and image encryption. Finally, we show an original application that exploits the orthogonality of the two chaotic signals for the simultaneous encryption of two digital images.
机译:离散时间动态混沌系统遵守一组涉及一个或多个变量的复发方程。已经提出了许多混沌图。无同时提供两个正弦余弦输出具有静止式平均值和标准偏差,或者对于硬件实现中使用的数据格式非常强大。这里,我们提出了一种基于复杂的分量的混沌振荡器,其角度参数根据与瞬时幅度无关的几何渐变。为了保持振荡,使用近似因子在每次迭代时归一化相量幅度。该振荡器的统计特性在短期内静止,并且不依赖于初始条件。两个正交序列的平均值和标准偏差分别快速接近0和1 /根2。得到的分布类似于具有恒定角度步骤的数字正弦的分布。我们还提供了FPGA架构及其实现结果。该振荡器可以用于调制方案,例如混沌移位键控,或用于数据和图像加密。最后,我们展示了一个原始应用程序,用于利用两个混沌信号的正交性,以便同时加密两个数字图像。

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