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On an aperiodic stochastic resonance signal processor and its application in digital watermarking

机译:非周期性随机共振信号处理器及其在数字水印中的应用

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In this paper, an aperiodic stochastic resonance (ASR) signal processor for communication systems based on a bistable dynamic mechanism is proposed for detecting base-band binary pulse amplitude modulation (PAM) signals in communication systems. All parameters in the processor can be adjusted when needed. The adjustment mechanism is explained from the perspective of the conventional noise-induced nonlinear signal processing. To demonstrate this processor's" "usability, a digital image-watermarking algorithm in the discrete cosine transform (DCT) domain is implemented. In this algorithm, the watermark and the DCT alternating current (ac) coefficients of the image are viewed as the input signal and the channel noise, respectively. In conventional watermarking systems, it is difficult to explain why the detection bit error ratio (BER) of a watermarking system suffering from certain attacks is lower than that of the system not suffering from any attack. In the new watermarking algorithm, this phenomenon is systematically analyzed. It is shown that the DCT ac coefficients of an image as well as the noise imposed by the attacks can cooperate within the bistable system to improve the performance of the watermark detection.
机译:本文提出了一种基于双稳态动态机制的通信系统非周期性随机共振(ASR)信号处理器,用于检测通信系统中的基带二进制脉冲幅度调制(PAM)信号。需要时可以调整处理器中的所有参数。从常规噪声引起的非线性信号处理的角度来解释调节机制。为了证明该处理器的可用性,在离散余弦变换(DCT)域中实现了一种数字图像水印算法。在该算法中,图像的水印和DCT交流(ac)系数分别视为输入信号和通道噪声。在传统的水印系统中,难以解释为什么遭受某些攻击的水印系统的检测误码率(BER)低于没有遭受任何攻击的系统的检测误码率。在新的水印算法中,系统地分析了这种现象。结果表明,图像的DCT ac系数以及攻击带来的噪声可以在双稳态系统内协同工作,从而提高水印检测的性能。

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