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High-performance compression and double cryptography based on compressive ghost imaging with the fas

上海光学精密机械研究所 免费考研网/2018-05-06

外文题目: High-performance compression and double cryptography based on compressive ghost imaging with the fast Fourier transform
作者: Zhang Leihong; Pan Zilan; Wu Luying; Ma Xiuhua
刊名: Opt. Lasers Eng.
年: 2016 卷: 86 页: 329--337
英文关键词:
Fast Fourier transform; Computational ghost imaging; Compressive sensing; Attack
PHASE ENCRYPTION; ATTACKS; PLANE; KEYS
英文摘要:
To solve the problem that large images can hardly be retrieved for stringent hardware restrictions and the security level is low, a method based on compressive ghost imaging (CGI) with Fast Fourier Transform (FFT) is proposed, named FFT-CGI. Initially, the information is encrypted by the sender with FFT, and the FFT-coded image is encrypted by the system of CGI with a secret key. Then the receiver decrypts the image with the aid of compressive sensing (CS) and FFT. Simulation results are given to verify the feasibility, security, and compression of the proposed encryption scheme. The experiment suggests the method can improve the quality of large images compared with conventional ghost imaging and achieve the imaging for large-sized images, further the amount of data transmitted largely reduced because of the combination of compressive sensing and FFT, and improve the security level of ghost images through ciphertext-only attack (COA), chosen-plaintext attack (CPA), and noise attack. This technique can be immediately applied to encryption and data storage with the advantages of high security, fast transmission, and high quality of reconstructed information. (C) 2016 Elsevier Ltd. All rights reserved.


文献类型: 期刊论文
正文语种: English
收录类别: SCIEI
DOI: 10.1016/j.optlaseng.2016.06.025


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