Academic literature on the topic 'Crypto-système basé sur le chaos'
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Journal articles on the topic "Crypto-système basé sur le chaos"
Hamelin, Louis-Edmond. "Dans la plaine laurentienne, la glace du sol aurait-elle contribué au façonnement des glissements et autres formes de relief en creux?" Cahiers de géographie du Québec 15, no. 36 (April 12, 2005): 439–65. http://dx.doi.org/10.7202/020981ar.
Full textLarue, Louis. "Focus 26 - janvier 2021." Regards économiques, January 28, 2021. http://dx.doi.org/10.14428/regardseco/2021.01.28.01.
Full textDissertations / Theses on the topic "Crypto-système basé sur le chaos"
Yang, Chunxiao. "Fractional chaotic pseudo-random number generator design and application to image cryptosystem." Electronic Thesis or Diss., Ecole centrale de Nantes, 2022. http://www.theses.fr/2022ECDN0063.
Full textChaotic systems have been employed to design pseudo-random number generators (PRNG) and applied to cryptosystems due to their promising features, such as randomness and sensitivity to initial conditions. The fractional chaotic systems, though muchless discussed than the classical integer order chaotic maps and systems, possess intriguing intricacy which can provide novelty, complexity, and extra secret keys to the Chaotic PRNG (CPRNG) design, which in turn enhance the security of the cryptosystem.This thesis investigated different numerical calculation approaches for fractional chaotic systems. A non-uniform gird calculationmethod with two different grid compositions was proposed to solve the 3D fractional chaotic systems numerically. The FractionalCPRNGs (FCPRNG), which meet the randomness and statistical requirements, were designed for the first time employing threedifferent fractional chaotic systems. In addition, a stream cipher and a block cipher based on DNA encoding and decoding methods were proposed and studied using the designed FCPRNGs. Both ciphers have been verified to be secure and reliable
Masmoudi, Atef. "Elaboration et analyse de nouveaux algorithmes de crypto-compression basés sur le codage arithmétique." Thesis, Montpellier 2, 2010. http://www.theses.fr/2010MON20197/document.
Full textActually, we live in a digital society. The proliferation of the Internet and the rapid progress in information technology on multimedia, have profoundly transformed the way we communicate. An enormous amount of media can be easily exchanged through the Internet and other communication networks. Digital image in particular occupies an important place in modern interpersonal communication. However, image data have special features such as bulk capacity. Thus, image security and compression issues have became exceptionally acute. It is these considerations that have guided this thesis. Thus, we propose throw this thesis to incorporating security requirements in the data compression system to ensure reasonable security without downgrading the compression performance.For lossless image compression, we have paid most attention to the arithmetic coding (AC) which has been widely used as an efficient compression algorithm in the new standards including JBIG, JBIG2, JPEG2000 and H.264/AVC. For image encryption, we are based on the combination of a chaotic system and the Engel continued fraction map to generate key-stream with both good chaotic and statistical properties. First, we have proposed two new schemes for lossless image compression based on adding new pre-treatment steps and on proposing new modeling methods to estimate probabilities for AC. Experimental results demonstrate that the proposed schemes give mean compression ratios that are significantly higher than those by the conventional AC. In addition, we have proposed a new pseudo-random bit generator (PRBG). The detailed analysis done by NIST statistical test Suite demonstrates that the proposed PRGB is suitable for cryptography. The proposed PRBG is used to develop a new symmetr ic stream cipher for image encryption. Theoretic and numerical simulation analyses indicate that our image encryption algorithm is efficient and satisfies high security. Finally, we have proposed a new scheme which performs both lossless compression and encryption of image. The lossless compression is based on the binary AC (BAC) and the encryption is based on the proposed PRBG. The numerical simulation analysis indicates that the proposed compression and encryption scheme satisfies highly security with no loss of the BAC compression efficiency
Book chapters on the topic "Crypto-système basé sur le chaos"
DUBREUIL, Sylvain, Nathalie BARTOLI, Christian GOGU, and Thierry LEFEBVRE. "Réduction d’incertitudes en analyse multidisciplinaire basée sur une étude de sensibilité par chaos polynomial." In Ingénierie mécanique en contexte incertain, 121–50. ISTE Group, 2021. http://dx.doi.org/10.51926/iste.9010.ch4.
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