Bernoulli's Chaotic Map-Based 2D ECG Image Steganography

Anukul Pandey, B. Saini, B. P. Singh, Neetu Sood
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引用次数: 9

Abstract

Signal processing technology comprehends fundamental theory and implementations for processing data. The processed data is stored in different formats. The mechanism of electrocardiogram (ECG) steganography hides the secret information in the spatial or transformed domain. Patient information is embedded into the ECG signal without sacrificing the significant ECG signal quality. The chapter contributes to ECG steganography by investigating the Bernoulli's chaotic map for 2D ECG image steganography. The methodology adopted is 1) convert ECG signal into the 2D cover image, 2) the cover image is loaded to steganography encoder, and 3) secret key is shared with the steganography decoder. The proposed ECG steganography technique stores 1.5KB data inside ECG signal of 60 seconds at 360 samples/s, with percentage root mean square difference of less than 1%. This advanced 2D ECG steganography finds applications in real-world use which includes telemedicine or telecardiology.
基于Bernoulli混沌映射的二维心电图像隐写
信号处理技术包括数据处理的基本理论和实现。处理后的数据以不同的格式存储。心电图隐写的机制是将秘密信息隐藏在空间域或变换域。将患者信息嵌入到心电信号中,而不牺牲显著的心电信号质量。本章通过研究用于二维心电图像隐写的伯努利混沌映射,为心电隐写做出了贡献。采用的方法是:1)将心电信号转换成二维覆盖图像,2)将覆盖图像加载到隐写编码器中,3)与隐写解码器共享密钥。所提出的心电隐写技术以360个样本/秒的速度在60秒的心电信号中存储1.5KB的数据,其百分比均方根差小于1%。这种先进的2D心电图隐写术在现实世界中应用,包括远程医疗或心脏病学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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