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信息与电子科学

基于CCSDS IDC的联合信源与安全编译码

  • 李林森 ,
  • 张灿 ,
  • 陈德元
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  • 1. 中国科学院研究生院信息科学与工程学院, 北京 100049;
    2. 中国科学院研究生院信息安全国家重点实验室, 北京 100049

收稿日期: 2011-04-27

  修回日期: 2011-05-09

  网络出版日期: 2012-05-15

基金资助

国家自然科学基金(61032006, 60972067)和国家科技重大专项(2010ZX03002-008)资助

Joint source encryption coding based on CCSDS image data compression standard

  • LI Lin-Sen ,
  • ZHANG Can ,
  • CHEN De-Yuan
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  • 1. School of Information Science and Engineering, Graduate University, Chinese Academy of Sciences, Beijing 100049, China;
    2. State Key Laboratory of Information Security, Graduate University, Chinese Academy of Sciences, Beijing 100049, China

Received date: 2011-04-27

  Revised date: 2011-05-09

  Online published: 2012-05-15

摘要

CCSDS图像数据压缩(IDC)标准和分组密码算法SMS4通过将数据压缩与安全分别最优化,使编译码总体性能达到最佳.该算法计算复杂度高,难以保障图像数据在资源受限网络中有效和安全传输.本文使用SMS4分组密钥对图像直流系数进行随机算术编码;对交流系数采用序列加密编码,提出一种基于CCSDS IDC的联合信源与安全编译码算法.仿真实验表明,该算法降低了计算复杂度,同时提供了良好的安全性能.

本文引用格式

李林森 , 张灿 , 陈德元 . 基于CCSDS IDC的联合信源与安全编译码[J]. 中国科学院大学学报, 2012 , (3) : 384 -391 . DOI: 10.7523/j.issn.2095-6134.2012.3.016

Abstract

The CCSDS IDC standard and SMS4 algorithm are separately designed for achieving the best performance of the overall system. However, they can not guarantee the transmission of the image data in the resources-limited network. We propose a joint source encryption algorithm based on CCSDS IDC standard. Randomized arithmetic coding is performed for the DC coefficients by using SMS4 sub-keys, and stream cipher for the AC coefficients. The simulation results show that this method has lower computational complexity and better security performance.

参考文献

[1] Tischer F J. Basic theory of space communication[M]. Princeton, NJ, USA: Van Nostrand, 1965.
[2] CCSDS. Image data compression, recommended standard[S]. CCSDS 122.0-B-1, Blue Book, 2006.
[3] CCSDS. Space communications protocol specification(SCPS)-security protocol (SCPS-SP)[S]. 713.5-B-1, 1999.
[4] Rice R, Plaunt J. Adaptive variable-length coding for efficient compression of spacecraft television data[J]. IEEE Trans, 1971,19(6): 889-897.
[5] Shwartz J W, Baker R C. Bit-plane encoding: a technique for source encoding[J]. IEEE Trans Aerospace Electron, Syst, 1966, 2(4): 385-392.
[6] 吕述望, 范修斌,王昭顺,等. 完全映射及其密码学应用[M].合肥:中国科学技术大学出版社,2008.
[7] Zhang L, Wu W L. Different fault analysis on SMS4[J]. Chinese Journal of Computers, 2009, 29(9): 1596-1602(in Chinese). 张蕾,吴文玲.SMS4密码算法的差分故障攻击[J].计算机学报, 2009, 29(9): 1596-1602.
[8] Grangetto M, Grosso A, Magli E. Selective encryption of JPEG 2000 images by means of randomized arithmetic coding //Proc IEEE Int Workshop on Multimedia Signal Processing. Politecnico di Torino, Italy, 2004: 347-350.
[9] Jakimoski G, Subbalakshmi KP. Cryptanalysis of some multimedia encryption schemes[J]. IEEE Trans Multimedia, 2008, 10(3): 330-338.
[10] Grangetto M, Magli E. Multimedia selective encryption by means of randomized arithmetic coding[J]. IEEE Trans, 2006, 8(5): 905-917.
[11] Witten L H, Neal R, Cleary J G. Arithmetic coding for data compression[J]. Commun ACM,1987, 30(6): 520-540.
[12] Moffat A, Neal R, Witten L. Arithmetic coding revisited[J]. ACM Trans on information Systems, 1998, 16(3): 256-294.
[13] Jerome M, Shapiro. Embedded image coding using zero trees of wavelet coefficient[J]. IEEE Transaction on Signal Processing, 1993, 41(12): 3445-3462.
[14] Yan F G, Zhang C, Li Z, et al. Image hybrid encryption algorithm for space communication[J]. Electronic Measurement Technology, 2008, 31(7):18-21(in Chinese). 闫锋刚,张灿,李哲,等.一种面向空间通信的图像复合加密算法[J].电子测量技术, 2008, 31(7):18-21.
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