通过滑动频谱分析,检测短视频中隐藏的军事通信信号
A study on audio synchronous steganography detection and distributed guide inference model based on sliding spectral features and intelligent inference drive
- 用25毫秒滑窗+STFT提取音频主频轨迹,识别同步帧标志
- 在36-45秒音频段发现低熵重复字节流,证实嵌入了指令数据
- 适合研究隐蔽通信、战术模拟及开放平台内容安全的学者
随着全球短视频平台兴起,将隐写数据嵌入音频同步流成为新型隐蔽通信方式。针对传统检测技术的局限,本文基于中国南海舰队在TikTok发布的短视频“鱼盘”样本,提出一种融合滑动频谱特征提取与智能推理机制的检测与分布式引导重构模型。采用25毫秒滑动窗口结合短时傅里叶变换(STFT)提取主频轨迹,构建同步帧检测模型(M1),成功识别出帧标志“FFFFFFFFFFFFFFFFFF80”。后续32字节载荷由结构化模型(M2)解码,推断分布式引导指令。分析显示,36至45秒音频段存在低熵、重复字节序列,且频谱能量高度集中,证实同步帧存在。虽未恢复明文语义,但命令字段布局一致,暗示军事通信协议特征。多段拼接模型进一步验证跨视频嵌入与集中解码能力。该框架证明滑动频谱特征在同步隐写检测中的有效性,并建立可扩展的推理模型,适用于开放平台上的隐蔽通信分析与战术引导仿真。
原文摘要 · Abstract (English)
With the rise of short video platforms in global communication, embedding steganographic data in audio synchronization streams has emerged as a new covert communication method. To address the limitations of traditional techniques in detecting synchronized steganography, this paper proposes a detection and distributed guidance reconstruction model based on short video "Yupan" samples released by China's South Sea Fleet on TikTok. The method integrates sliding spectrum feature extraction and intelligent inference mechanisms. A 25 ms sliding window with short-time Fourier transform (STFT) is used to extract the main frequency trajectory and construct the synchronization frame detection model (M1), identifying a frame flag "FFFFFFFFFFFFFFFFFF80". The subsequent 32-byte payload is decoded by a structured model (M2) to infer distributed guidance commands. Analysis reveals a low-entropy, repetitive byte sequence in the 36 to 45 second audio segment with highly concentrated spectral energy, confirming the presence of synchronization frames. Although plaintext semantics are not restored, the consistency in command field layout suggests features of military communication protocols. The multi-segment splicing model further shows cross-video embedding and centralized decoding capabilities. The proposed framework validates the effectiveness of sliding spectral features for synchronized steganography detection and builds an extensible inference model for covert communication analysis and tactical guidance simulation on open platforms.
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