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A known-plaintext attack on iterative random phase encoding in fractional Fourier domains

Autorzy
Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Known-plaintext attack is considered for decrypting the image generated by iterative random phase encoding in fractional Fourier transform domains. The double random phase encoding in Fourier domains is introduced to design the known-plaintext attack procedure. The decryption test is explored without both fractional order and these random phase masks. Some numerical simulations are made to demonstrate the validity of the known-plaintext attack.
Czasopismo
Rocznik
Strony
131--139
Opis fizyczny
Bibliogr. 39 poz., rys.
Twórcy
autor
  • Data Recovery Key Laboratory of Sichu Neijiang 641100, Sichuan, P.R. China
autor
  • Department of Automation Measurement and Control Engine Harbin Institute of Technology, Harbin 150001, P.R. China
autor
  • Department of Automation Measurement and Control Engine Harbin Institute of Technology, Harbin 150001, P.R. China
Bibliografia
  • [1] REFREGIER P., JAVIDI B., Optical image encryption based on input plane and Fourier plane random encoding, Optics Letters 20(7), 1995, pp. 767–769.
  • [2] GUOHAI SITU, JINGJUAN ZHANG, Double random-phase encoding in the Fresnel domain, Optics Letters 29(14), 2004, pp. 1584–1586.
  • [3] UNNIKRISHNAN G., JOSEPH J., SINGH K., Optical encryption by double-random phase encoding in the fractional Fourier domain, Optics Letters 25(12), 2000, pp. 887–889.
  • [4] YUAN SHENG, ZHOU XIN, MOHAMMAD S.A., LU XI, LI XIAO-FENG, Information hiding based on double random-phase encoding and public-key cryptography, Optics Express 17(5), 2009, pp. 3270–3284.
  • [5] ALFALOU A., MANSOUR A., Double random phase encryption scheme to multiplex and simultaneous encode multiple images, Applied Optics 48(31), 2009, pp. 5933–5947.
  • [6] MENG X.F., CAI L.Z., XU X.F., YANG X.L., SHEN X.X., DONG G.Y., WANG Y.R., Two-step phase-shifting interferometry and its application in image encryption, Optics Letters 31(10), 2006, pp. 1414–1416.
  • [7] YAN ZHANG, BO WANG, Optical image encryption based on interference, Optics Letters 33(21), 2008, pp. 2443–2445.
  • [8] LINFEI CHEN, DAOMU ZHAO, Optical image encryption with Hartley transforms, Optics Letters 31(23), 2006, pp. 3438–3440.
  • [9] ZHENGJUN LIU, HAIFA ZHAO, SHUTIAN LIU, A discrete fractional random transform, Optics Communications 255(4–6), 2005, pp. 357–365.
  • [10] ZHENGJUN LIU, SHUTIAN LIU, Randomization of the Fourier transform, Optics Letters 32(5), 2007, pp. 478–480.
  • [11] ZHENGJUN LIU, SHUTIAN LIU, Random fractional Fourier transform, Optics Letters 32(15), 2007, pp. 2088–2090.
  • [12] HANG CHEN, XIAOPING DU, ZHENGJUN LIU, CHENGWEI YANG, Color image encryption based on the affine transform and gyrator transform, Optics and Lasers in Engineering 51(6), 2013, pp. 768–775.
  • [13] ZHENGJUN LIU, AHMAD M.A., SHUTIAN LIU, Image encryption scheme based on the commutation and anti-commutation rules, Optics Communications 279(2), 2007, pp. 285–290.
  • [14] ZHENGJUN LIU, QIUMING LI, JINGMIN DAI, XIAOYI ZHAO, XIAOGANG SUN, SHUTIAN LIU, AHMAD M.A., Image encryption based on random scrambling of the amplitude and phase in the frequency domain, Optical Engineering 48(8), 2009.
  • [15] ZHENGJUN LIU, YAN ZHANG, HAIFA ZHAO, AHMAD M.A., SHUTIAN LIU, Optical multi-image encryption based on frequency shift, Optik – International Journal for Light and Electron Optics 122(11), 2011, pp. 1010–1013.
  • [16] HENNELLY B.M., SHERIDAN J.T., Random phase and jigsaw encryption in the Fresnel domain, Optical Engineering 43(10), 2004, pp. 2239–2249.
  • [17] SINHA A., SINGH K., Image encryption by using fractional Fourier transform and jigsaw transform in image bit planes, Optical Engineering 44(5), 2005, article ID 057001.
  • [18] JOSHI M., SHAKHER C., SINGH K., Fractional Fourier plane image encryption technique using radial hilbert-, and jigsaw transform, Optics and Lasers in Engineering 48(7–8), 2010, pp. 754–759.
  • [19] GUOHAI SITU, JINGJUAN ZHANG, Multiple-image encryption by wavelength multiplexing, Optics Letters 30(11), 2005, pp. 1306–1308.
  • [20] GUOHAI SITU, JINGJUAN ZHANG, Position multiplexing for multiple-image encryption, Journal of Optics A: Pure and Applied Optics 8(5), 2006, pp. 391–397.
  • [21] RAN TAO, YI XIN, YUE WANG, Double image encryption based on random phase encoding in the fractional Fourier domain, Optics Express 15(24), 2007, pp. 16067–16079.
  • [22] ZHENGJUN LIU, JINGMIN DAI, XIAOGANG SUN, SHUTIAN LIU, Triple image encryption scheme in fractional Fourier transform domains, Optics Communications 282(4), 2009, pp. 518–522.
  • [23] ZHENGJUN LIU, SHUTIAN LIU, Double image encryption based on iterative fractional Fourier transform, Optics Communications 275(2), 2007, pp. 324–329.
  • [24] HUIJUAN LI, YURONG WANG, Double-image encryption based on iterative gyrator transform, Optics Communications 281(23), 2008, pp. 5745–5749.
  • [25] ZHENGJUN LIU, QIUMING LI, JINGMIN DAI, XIAOGANG SUN, SHUTIAN LIU, AHMAD M.A., A new kind of double image encryption by using a cutting spectrum in the 1-D fractional Fourier transform domains, Optics Communications 282(8), 2009, pp. 1536–1540.
  • [26] ZHENGJUN LIU, QING GUO, LIE XU, AHMAD M.A., SHUTIAN LIU, Double image encryption by using iterative random binary encoding in gyrator domains, Optics Express 18(11), 2010, pp. 12033–12043.
  • [27] CHEN W., QUAN C., TAY C.J., Optical color image encryption based on Arnold transform and interference method, Optics Communications 282(18), 2009, pp. 3680–3685.
  • [28] YAMAMOTO H., HAYASAKI Y., NISHIDA N., Secure information display with limited viewing zone by use of multi-color visual cryptography, Optics Express 12(7), 2004, pp. 1258–1270.
  • [29] JOSHI M., CHANDRASHAKHER, SINGH K., Color image encryption and decryption for twin images in fractional Fourier domain, Optics Communications 281(23), 2008, pp. 5713–5720.
  • [30] LINFEI CHEN, DAOMU ZHAO, Color information processing (coding and synthesis) with fractional Fourier transforms and digital holography, Optics Express 15(24), 2007, pp. 16080–16089.
  • [31] ZHENGJUN LIU, JINGMIN DAI, XIAOGANG SUN, SHUTIAN LIU, Color image encryption by using the rotation of color vector in Hartley transform domains, Optics and Lasers in Engineering 48(7–8), 2010, pp. 800–805.
  • [32] 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.
  • [33] MONAGHAN D.S., GOPINATHAN U., NAUGHTON T.J., SHERIDAN J.T., Key-space analysis of double random phase encryption technique, Applied Optics 46(26), 2007, pp. 6641–6647.
  • [34] SITU G., MONAGHAN D.S., NAUGHTON T.J., SHERIDAN J.T., PEDRINI G., OSTEN W., Collision in double random phase encoding, Optics Communications 281(20), 2008, pp. 5122–5125.
  • [35] XIANG PENG, PENG ZHANG, HENGZHENG WEI, BIN YU, Known-plaintext attack on optical encryption based on double random phase keys, Optics Letters 31(8), 2006, pp. 1044–1046.
  • [36] FRAUEL Y., CASTRO A., NAUGHTON T.J., JAVIDI B., Resistance of the double random phase encryption against various attacks, Optics Express 15(16), 2007, pp. 10253–10265.
  • [37] QIN W., PENG X., Vulnerability to known-plaintext attack of optical encryption schemes based on two fractional Fourier transform order keys and double random phase keys, Journal of Optics A: Pure and Applied Optics 11(7), 2009.
  • [38] GERCHBERG R.W., SAXTON W.O., A practical algorithm for the determination of phase from image and diffraction plane pictures, Optik (Jena) 35(2), 1972, pp. 237–246.
  • [39] YAN ZHANG, CHENG-HAN ZHENG, TANNO N., Optical encryption based on iterative fractional Fourier transform, Optics Communications 202(4–6), 2002, pp. 277–285.
Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę (zadania 2017).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-2f7acdf4-faab-45ef-aaef-1ba124f52373
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