上海海事大学信息工程学院,上海 201306
[ "徐 明 男,1977年出生,安徽省马鞍山人. 现为上海海事大学信息工程学院副教授,主要研究方向为网络与信息安全.E-mail: mingxu@shmtu.edu.cn" ]
[ "胡沐宇 女,1995年出生,江苏南通人. 现为上海海事大学信息工程学院硕士研究生,主要研究方向为网络与信息安全.E-mail: muyu.hu@foxmail.com" ]
收稿:2020-08-24,
修回:2021-12-29,
纸质出版:2022-09-25
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徐明,胡沐宇.窃听信道下基于双分簇技术的信源安全有损传输[J].电子学报,2022,50(09):2196-2204.
XU Ming,HU Mu-yu.Secure Lossy Source Transmission over Wiretap Channel Based on Double Binning Technique[J].ACTA ELECTRONICA SINICA,2022,50(09):2196-2204.
徐明,胡沐宇.窃听信道下基于双分簇技术的信源安全有损传输[J].电子学报,2022,50(09):2196-2204. DOI: 10.12263/DZXB.20200932.
XU Ming,HU Mu-yu.Secure Lossy Source Transmission over Wiretap Channel Based on Double Binning Technique[J].ACTA ELECTRONICA SINICA,2022,50(09):2196-2204. DOI: 10.12263/DZXB.20200932.
针对图像、视频等文件在压缩传输时的可靠性和安全性问题,提出一种具有边信息和状态信息的窃听信道模型以及该模型下基于双分簇技术的信源安全有损传输方案,并利用信息理论对速率-失真-信息泄露率三元组进行可达性和逆命题证明.考虑到现实环境中的噪声因素,以高斯噪声信道为例进行具体分析,通过误差估计和微分熵定理推导出速率和失真的下界.此外,引入模糊率,将信息泄漏率转化为估计信源的最小均方误差,得出此误差的上界.仿真实验表明,所提方案在最优条件下比现有方案速率高,失真和信息泄露率小,在非最优条件下比现有方案模糊率高.
Aiming at the reliability and security problem of transmitting compressed images
videos and other files
a wiretap channel model with side information and state information and a secure lossy source transmission scheme based on double binning technique under this model are proposed. Moreover
the achievability and the converse of the triple rate-distortion-leakage are proved by the information theory. Considering the noise factors in the real environment
the Gaussian noise channel under this model is analyzed concretely as an example and the lower bounds of the rate and the distortion are derived based on the error estimation and the differential entropy theorem. In addition
the equivocation rate is introduced to transform the information leakage rate into the minimum mean square error of the estimated source and its upper bound is obtained. The simulation results show that the proposed scheme has higher rate and lower distortion and information leakage rate than the existing schemes under the optimal conditions
and has higher equivocation rate than the existing schemes under the non-optimal conditions.
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