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首页> 外文期刊>Circuits, systems, and signal processing >A Novel Quantum Audio Steganography-Steganalysis Approach Using LSFQ-Based Embedding and QKNN-Based Classifier
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A Novel Quantum Audio Steganography-Steganalysis Approach Using LSFQ-Based Embedding and QKNN-Based Classifier

机译:一种新型量子音频隐写沉默分析方法,使用基于LSFQ的嵌入和基于QKNN的分类器

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摘要

In this paper, a steganography-steganalysis model for quantum audio signals is presented. This model consists of two separate parts of steganography and steganalysis. In the steganography part, to increase the imperceptibility and enhance the undetectability of the least significant bit method, first, the quantum host audio signal is divided into quantum frames of the specified length, and then, using the triangular number sequence, some samples of each frame are selected for the embedding operation. Finally, the embedding process is carried out within the least significant fractional qubit of the amplitude information of the selected samples. The steganalysis part also includes a quantum universal steganalyzer for detecting the embedding operations of the steganography part and a feature extraction module for calculating the power feature of quantum audio signal frames. The recognition operation is based on the quantumK-nearest neighbor algorithm and the Hamming distance criterion. All quantum circuits of the steganography and steganalysis parts of the proposed model were simulated and then tested and evaluated using different audio files. Detection accuracy of over 90% indicates the accuracy and efficiency of the proposed method in quantum audio steganography detection in the context of quantum communication networks.
机译:本文提出了一种用于量子音频信号的隐写术模型。该模型包括两个独立的隐写术和塞巴巴分析。在隐写术部分中,为了增加难以察觉和提高最低有效位方法的未检测性,首先,量子主机音频信号被分成指定长度的量子帧,然后使用三角形数序列,每个样本为嵌入操作选择帧。最后,嵌入过程在所选样本的幅度信息的最低显着的分数Qubit内执行。托析分析还包括Quantum Universal STEGANALYZER,用于检测隐写术部件的嵌入操作和用于计算量子音频信号帧的功率特征的特征提取模块的嵌入操作。识别操作基于Quantumk-最近邻算法和汉明距离标准。模拟了隐写模型的所有量子电路和所提出的模型的隐分部分,然后使用不同的音频文件进行测试和评估。超过90%的检测精度表示量子通信网络的上下文中Quantum音频隐写术检测中所提出的方法的准确性和效率。

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