Advance Encryption Then Compression System for grayscale and Colour Images

Authors

  • Deepa Bendale Author
  • Prof. Rahul Chinchore Author

Keywords:

Image compression, Encryption-Then-Compression (ETC), CTE system, privacy protection, PSNR

Abstract

Image encryption has to be conducted prior to image compression. Encryption-then-Compression (ETC) system have used.  To design image encryption and compression algorithms such that compressing encrypted images .In CTE system also used but its reverse process to image compress and  privacy protection for image. In that security of our proposed  image encryption and the compression performance on the encrypted data. In existing work, firstly image encryption then compression and forwarded then decryption and decompression to get a reconstructed image. The proposed image encryption  and compression system used for gray scale and colour images provide a reasonably high level of security, The compression efficiency, Perform lossless image compression which take original, unencrypted images as inputs. In contrast, most of the existing ETC solutions induce significant penalty on the compression efficiency .   

References

J. Zhou, X. Liu, and O. C. Au, “On the design of an efficient encryption then-compression system,” in Proc. ICASSP, 2013, pp. 2872–2876.

[2] T. Bianchi, A. Piva, and M. Barni, “On the implementation of the discrete Fourier transform in the encrypted domain,” IEEE Trans. Inf. Forensics Security, vol. 4, no. 1, pp. 86–97, Mar. 2009.

[3] T. Bianchi, A. Piva, and M. Barni, “Encrypted domain DCT based on homomorphic cryptosystems,” EURASIP J. Inf. Security, 2009, Article ID 716357.

[4] T. Bianchi, A. Piva, and M. Barni, “Composite signal representation for fast and storage-efficient processing of encrypted signals,” IEEE Trans. Inf. Forensics Security, vol. 5, no. 1, pp. 180–187, Mar. 2010.

[5] M. Barni, P. Failla, R. Lazzeretti, A.-R. Sadeghi, and T. Schneider, “Privacy-preserving ECG classification with branching programs and neural networks,” IEEE Trans. Inf. Forensics Security, vol. 6, no. 2, pp. 452–468, Jun. 2011.

[6] Z. Erkin, T. Veugen, T. Toft, and R. L. Lagendijk, “Generating private recommendations efficiently using homomorphic encryption and data packing,” IEEE Trans. Inf. Forensics Security, vol. 7, no. 3, pp. 1053–1066, Jun. 2012.

[7] M. Johnson, P. Ishwar, V. M. Prabhakaran, D. Schonberg, and K. Ramchandran, “On compressing encrypted data,” IEEE Trans. Signal Process., vol. 52, no. 10, pp. 2992–3006, Oct. 2004.

[8] D. Schonberg, S. C. Draper, and K. Ramchandran, “On blind compression of encrypted correlated data approaching the source entropy rate,” in Proc. 43rd Annu. Allerton Conf., 2005, pp. 1–3.

[9] D. Schonberg, S. C. Draper, and K. Ramchandran, “On compression of encrypted images,” in Proc. IEEE Int. Conf. Image Process., Oct. 2006, pp. 269–272.

[10] D. Klinc, C. Hazay, A. Jagmohan, H. Krawczyk, and T. Rabin, “On compression of data encrypted with block ciphers,” IEEE Trans. Inf. Theory, vol. 58, no. 11, pp. 6989–7001, Nov. 2012.

[11] R. Lazzeretti and M. Barni, “Lossless compression of encrypted greylevel and color images,” in Proc. 16th Eur. Signal Process. Conf., Aug. 2008, pp. 1–5.

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Published

2016-02-28

How to Cite

Advance Encryption Then Compression System for grayscale and Colour Images. (2016). International Journal of Advanced Research in Science, Management and Technology, 2(1), 1-7. https://ijarsmt.in/ijarsmt/article/view/29

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