Cryptogram steganography method using a JFT optical architecture

Authors

  • María Alejandra Guerrero V Universidad de Pamplona
  • Jorge Enrique Rueda P Universidad de Pamplona

DOI:

https://doi.org/10.24054/bistua.v18i1.210

Keywords:

Encriptación óptica, Esteganografía, Transformada de Fourier

Abstract

En los métodos ópticos para encriptación de imágenes, los criptogramas guardan el mismo patrón de las máscaras de encriptación y esto facilita su detección. Nosotros presentamos un método de encriptación que simultáneamente produce un criptograma estenograma. En las múltiples pruebas de validación de la técnica, incluso para la misma imagen secreta, nosotros obtuvimos estenogramas totalmente diferentes.

Downloads

Download data is not yet available.

References

Refregier P., Javidi B., Optical image encryption based on input plane and fourier plane encoding, Optics Letters, vol. 20, nº 7, pp. 767-769, 1995.

Nomura T., Javidi B., Optical encryption using a joint transform correlator architecture, Optical Engineering, vol. 39, nº 8, 2000.

Xiong Y., Du J.Q.C., Optical encryption and authentication scherme based on phase-shifting interferometry in a joint transform correlator, Optics and Laser Technology, vol. 126, 2020.

Liu X., Meng X., Wang Y., Huazheng W., Yang X., He W., Chen H., Optical multilevel authentication based on singular value decomposition ghost imaging and secret sharing cryptography., Optics and Lasers in Engineering, vol. 137, 2021.

Chen H., Liu Z., Tanougast C., Liu F., Blondel W., Optical cryptosystem scheme for hyperspectral image based on random spiral transform in gyrator domains, Optics and Lasers in Engineering, vol. 137, 2021.

Yi K., Leihong Z., Hualong Y., Mantong Z., Kanwai S., Dawei C., Camouflaged optical encryption based on comprenssive ghost imaging, Optics and Lasers in Engineering, vol. 134, 2020.

Caia J., Shena X., Fanb C., Zhou B., Security-enhanced optical encryption based on JTC architecture, Optik-International Journal for Light and Electron Optics, vol. 206, 2020.

Liu S., Guo C., Sheridan J.T., A review of optical image encryption techniques, Optics and Laser Technology, 2014.

Rueda J.E., Encryption using circular harmonic key, Dyna, vol. 82, nº 190, pp. 70-73, 2015.

Jiao S., Zhou Y., Li X., Review on optical image hiding and watermarking techniques, Optics ans Laser Technology, vol. 109, pp. 370-380, 2019.

Miri A., Faez K., Adaptative image steganography based on transform domain via genetic algorithm, Optik, vol. 145, pp. 158-168, 2017.

Wang C., Wang H., Ji Y., Multi-bit wavelength coding phase-shift-keying optical steganography based on amplifies spontaneus emission noise, Optics Communications, vol. 407, pp. 1-8, 2018.

Liu H.C., Chen W., Optical ghost cryptography and steganography, Optics and Laser in Engineering , vol. 130, 2020.

Zhang J., Lu W., Yin X., Liu W., Yeung Y., Binary image steganography based on joint distortion measurement, J. Vis. Commun. Image R, vol. 58, pp. 600-605, 2019.

Rosen J., Steganography and encryption systems based on spatial correlators with meaningful output images, de Optical and Digital Techniques for information Security, pp. 59-94.

Vilardy J., Millan M.S., Pérez-Cabré E., Experimental optical encryption scheme for the double random phase enconding using a nonlinear joint transform correlator, Optik, vol. 217, 2020.

Published

2020-11-03 — Updated on 2020-11-03

Versions

How to Cite

Guerrero V, M. A. ., & Rueda P, J. E. (2020). Cryptogram steganography method using a JFT optical architecture. BISTUA REVISTA DE LA FACULTAD DE CIENCIAS BASICAS, 18(1), 34–38. https://doi.org/10.24054/bistua.v18i1.210

Issue

Section

Paper