Chinese Optics Letters, Volume. 10, Issue s1, S11006(2012)

Multiple and color images compression-encryption schemes with balanced qualities based on the multiple-order discrete fractional cosine transform

Qingmin Zhao, Xianzhe Luo, Nanrun Zhou, and Jianhua Wu

By making use of the discrete fractional cosine transform, spectrum cutting and combining, rate-distortion control and color space transform, a joint compression and encryption scheme for multiple images and color images is proposed based on the multiple-order discrete fractional cosine transform (MODFrCT). The spectra coefficients of images gotten by the discrete cosine transform are scanned in a way of zigzag, cut at an appropriate position, and combined into a single spectrum image sequentially encrypted by the MODFrCT. Rate-distortion control is utilized during the spectrum cutting to balance the qualities of the multiple reconstructed images. A color image can be decomposed into Y, Cb, and Cr components prior to the encryption, and these three components are then encrypted in the same way as that for multiple images. The numerical simulations demonstrate the validity and efficiency of these schemes, and the robustness of the schemes against occlusion attack is examined.

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Qingmin Zhao, Xianzhe Luo, Nanrun Zhou, Jianhua Wu. Multiple and color images compression-encryption schemes with balanced qualities based on the multiple-order discrete fractional cosine transform[J]. Chinese Optics Letters, 2012, 10(s1): S11006

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Paper Information

Category: Image processing

Received: Oct. 12, 2011

Accepted: Jan. 18, 2012

Published Online: May. 18, 2012

The Author Email:

DOI:10.3788/col201210.s11006

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