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The impact of the theoretical properties of the Logistic Function on the generation of optically detectable watermarks

机译:Logistic函数的理论性质对光学可检测水印的生成的影响

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A digital watermark is a visible, or preferably invisible, identification code that is permanently embedded in digital media, to prove owner authentication and provide protection for security or defence documents. In this paper, we present an approach for the generation of watermarks using a logistic chaotic function. Using this function, in conjunction with seed management, it is possible to generate chaotic sequences that may be used to create highpass or lowpass digital watermarks. A slight change in the initial conditions will quickly lead to a significant change in the subsequent states of the system, and thus will generate substantially different watermarks. This technique has been shown to offer an added security advantage over the more traditionally generated watermarks created from pseudorandom sequences, in that only the function seed needs to be stored. We have previously presented a study where an optical correlator was suitable for the detection of chaotically generated watermarks. We have also studied the impact of shot noise present in an optical detector for watermarks generated using the logistic function. The logistic function presented in this paper is ill-defined for certain seed values and has not been fully investigated for the purpose of watermark generation. We consider the impact of the theoretical properties of the logistic function on watermark generation and their highpass and lowpass properties, which when embedded in digital media, are suitable for optical detection.
机译:数字水印是永久嵌入数字媒体中的可见(或最好是不可见)识别码,以证明所有者的身份验证并为安全或防御文档提供保护。在本文中,我们提出了一种使用对数混沌函数生成水印的方法。使用此功能,结合种子管理,可以生成可用于创建高通或低通数字水印的混沌序列。初始条件的细微变化将迅速导致系统后续状态的显着变化,因此将产生实质上不同的水印。与伪随机序列创建的更传统的生成水印相比,该技术已显示出额外的安全优势,因为仅需要存储函数种子。我们先前已经提出了一项研究,其中光学相关器适用于检测混沌生成的水印。我们还研究了光学检测器中散粒噪声对使用逻辑函数生成的水印的影响。本文提出的逻辑函数对于某些种子值是不确定的,并且尚未针对水印生成的目的进行全面研究。我们考虑逻辑函数的理论特性对水印生成及其高通和低通特性的影响,这些特性在嵌入数字媒体时适合光学检测。

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