Post Quantum Steganography for Cloud Privacy Preservation using Multivariable Quadratic Polynomial

K. Anguraju, R. Prakash, V. Sowjanya, P. Ranjith, E. Murali, P. Ashok
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Abstract

The cryptography and steganography can be employed as an appropriate tool for improving the confidentiality of transmissions over the cloud environment. Several of the prevailing steganographic systems are based on the public key steganographic systems such as RSA and ECC where the privacy is based on the complexities in addressing the numerical factorization issues and distinct log-based issues. Moreover, the schemes for addressing the numerical factorization issues and distinct log-based issues enhances statistically. Hence the presence of quantum computing within the extent of 1000 bits can be real-world risks to the system with these issues. The goal is to propose a fresh Quadratic Polynomial Based Post Quantum steganography system that aggregates the post-quantum cryptography with steganography for assuring safety during cloud communication that will be preserved both for traditional computing and post-quantum computing age.
基于多变量二次多项式的云隐私保护后量子隐写
密码学和隐写术可以作为一种适当的工具来提高云环境中传输的机密性。一些流行的隐写系统是基于公钥隐写系统,如RSA和ECC,其中隐私是基于解决数字分解问题和不同的基于日志的问题的复杂性。此外,解决数字因子分解问题和基于不同对数的问题的方案在统计上有所提高。因此,在1000位范围内的量子计算的存在可能会给系统带来这些问题的现实风险。目标是提出一种新的基于二次多项式的后量子隐写系统,该系统将后量子密码学与隐写术结合在一起,以确保云通信期间的安全,这种安全将在传统计算和后量子计算时代得到保留。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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