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Tytuł artykułu

Color image encryption using singular value decomposition in discrete cosine Stockwell transform domain

Autorzy
Treść / Zawartość
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In this paper, an image encryption technique using singular value decomposition (SVD) and discrete cosine Stockwell transform (DCST) is proposed. The original source image is encrypted using bands of DCST along with the SVD decomposed images. The number of bands in DCST, parameters used to mask the singular values, the way of permutation used to shuffle the values of SVD transformed images and the way of arrangement of SVD matrices are used as encryption keys. It is necessary to have correct knowledge of all the keys along with their respective values, for correct decryption of encrypted images. The robustness and the quality measurement of proposed work are analyzed by comparing it with some existing works.
Czasopismo
Rocznik
Strony
25--38
Opis fizyczny
Bibliogr. 42 poz., rys., tab.
Twórcy
autor
  • Banaras Hindu University, Varanasi, India
autor
  • Babasaheb Bhimrao Ambedkar University (A Central University), Vidya Vihar, Lucknow, India
Bibliografia
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  • [5] ZHENGJUN LIU, YU ZHANG, WEI LIU, FANYI MENG, QUN WU, SHUTIAN LIU, Optical color image hiding scheme based on chaotic mapping and Hartley transform, Optics and Lasers in Engineering 51(8), 2013, pp. 967–972.
  • [6] QING GUO, ZHENGJUN LIU, SHUTIAN LIU, Color image encryption by using Arnold and discrete fractional random transform in IHS space, Optics and Lasers in Engineering 48(12), 2010, pp. 1174–1181.
  • [7] ZHENGJUN LIU, LIE XU, TING LIU, HANG CHEN, PENGFEI LI, CHUANG LIN, SHUTIAN LIU, Color image encryption by using Arnold transform and color-blend operation in discrete cosine transform domains, Optics Communications 284(1), 2011, pp. 123–128.
  • [8] ZHENGJUN LIU, MIN GONG, YONGKANG DOU, FENG LIU, SHEN LIN, AHMAD M.A., JINGMIN DAI, SHUTIAN LIU, Double image encryption by using Arnold transform and discrete fractional angular transform, Optics and Lasers in Engineering 50(2), 2012, pp. 248–255.
  • [9] SINGH N., SINHA A., Gyrator transform-based optical image encryption using chaos, Optics and Lasers in Engineering 47(5), 2009, pp. 539–546.
  • [10] ABUTURAB M.R., Color image security system using double random-structured phase encoding in gyrator transform domain, Applied Optics 51(15), 2012, pp. 3006–3016.
  • [11] ABUTURAB M.R., Securing color information using Arnold transform in gyrator transform domain, Optics and Lasers in Engineering 50(5), 2012, pp. 772–779.
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  • [13] ABUTURAB M.R., Color image security system based on discrete Hartley transform in gyrator transform domain, Optics and Lasers in Engineering 51(3), 2013, pp. 317–324.
  • [14] ABUTURAB M.R., Noise-free recovery of color information using a joint-extended gyrator transform correlator, Optics and Lasers in Engineering 51(3), 2013, pp. 230–239.
  • [15] ABUTURAB M.R., Color information verification system based on singular value decomposition in gyrator transform domains, Optics and Lasers in Engineering 57, 2014, pp. 13–19.
  • [16] NANRUN ZHOU, YIXIAN WANG, LIHUA GONG, Novel optical image encryption scheme based on fractional Mellin transform, Optics Communications 284(13), 2011, pp. 3234–3242.
  • [17] NANRUN ZHOU, HAOLIN LI, DI WANG, SHUMIN PAN, ZHIHONG ZHOU, Image compression and encryption scheme based on 2D compressive sensing and fractional Mellin transform, Optics Communications 343, 2015, pp. 10–21.
  • [18] NANRUN ZHOU, SHUMIN PAN, SHAN CHENG, ZHIHONG ZHOU, Image compression–encryption scheme based on hyper-chaotic system and 2D compressive sensing, Optics and Laser Technology 82, 2016, pp. 121–133.
  • [19] NANRUN ZHOU, AIDI ZHANG, FEN ZHENG, LIHUA GONG, Novel image compression–encryption hybrid algorithm based on key-controlled measurement matrix in compressive sensing, Optics and Laser Technology 62, 2014, pp. 152–160.
  • [20] NANRUN ZHOU, AIDI ZHANG, JIANHUA WU, DONGJU PEI, YIXIAN YANG, Novel hybrid image compression–encryption algorithm based on compressive sensing, Optik – International Journal for Light and Electron Optics 125(18), 2014, pp. 5075–5080.
  • [21] LIHUA GONG, XINGBIN LIU, FEN ZHENG, NANRUN ZHOU, Flexible multiple-image encryption algorithm based on log-polar transform and double random phase encoding technique, Journal of Modern Optics 60(13), 2013, pp. 1074–1082
  • [22] YU-GUANG YANG, JUAN XIA, XIN JIA, HUA ZHANG, Novel image encryption/decryption based on quantum Fourier transform and double phase encoding, Quantum Information Processing 12(11), 2013, pp. 3477–3493
  • [23] NAN RUN ZHOU, TIAN XIANG HUA, LI HUA GONG, DONG JU PEI, QING HONG LIAO, Quantum image encryption based on generalized Arnold transform and double random-phase encoding, Quantum Information Processing 14(4), 2015, pp. 1193–1213.
  • [24] ZHENGJUN LIU, SHUTIAN LIU, Random fractional Fourier transform, Optics Letters 32(15), 2007, pp. 2088–2090.
  • [25] SHUTIAN LIU, QUANLIN MI, BANGHE ZHU, Optical image encryption with multistage and multichannel fractional Fourier-domain filtering, Optics Letters 26(16), 2001, pp. 1242–1244.
  • [26] YAN ZHANG, CHENG-HAN ZHENG, NAOHIRO TANNO, Optical encryption based on iterative fractional Fourier transform, Optics Communications 202(4–6), 2002, pp. 277–285.
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  • [28] LINFEI CHEN, DAOMU ZHAO, Color image encoding in dual fractional Fourier-wavelet domain with random phases, Optics Communications 282(17), 2009, pp. 3433–3438.
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  • [32] KUMAR M., VAISH A., Encryption of color images using MSVD in DCST domain, Optics and Lasers in Engineering 88, 2017, pp. 51–59.
  • [33] WANG Y., Efficient Stockwell Transform with Applications to Image Processing, Ph.D. Thesis, University of Waterloo, Ontario, Canada, 2011.
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  • [36] LADAN J., VRSCAY E.R., The discrete orthonormal Stockwell transform and variations, with applications to image compression, [In] Kamel M., Campilho A. [Eds.], Image Analysis and Recognition. ICIAR 2013. Lecture Notes in Computer Science, Vol. 7950, Springer, Berlin, Heidelberg, pp. 235–244.
  • [37] KAMM J.L., SVD-based methods for signal and image restoration, Ph.D. Thesis, 1998.
  • [38] RANADE A., MAHABALARAO S.S., KALE S., A variation on SVD based image compression, Image and Vision Computing 25(6), 2007, pp. 771–777.
  • [39] KUMAR M., VAISH A., An efficient encryption-then-compression technique for encrypted images using SVD, Digital Signal Processing 60, 2017, pp. 81–89.
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Uwagi
PL
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-b8e842e1-b23d-4092-9b2e-84bb7c9e8696
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