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An adaptive security framework with extensible computational complexity for cipher systems

机译:具有可扩展计算复杂性的密码系统的自适应安全框架

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Algebraic cryptanalysis, uses a range of algebraic tools and techniques to assess the security of cryptosystems, which are essential for trusted communications over open networks. Recent trends in algebraic cryptanalysis tend to use Modular Addition 2n over logic Exclusive-OR as a mixing operator to guard against security threats. We propose a newly designed framework for Modular Addition over field GF(2) satisfying the algebraic properties of regular Modular Addition 2n albeit with cumulative security enhancements and increased complexity to address these challenges. Nevertheless, it has been observed that the complexity of Modular Addition can be drastically decreased with the appropriate formulation of polynomial equations and probabilistic conditions. In this article we propose a new extended design framework for advanced Modular Addition and it is characterized by user-specified extendable security which does not impose additional changes in existing layout of ciphers including both stream and block ciphers. This framework can be rapidly scaled to use-specific requirements which boosts the algebraic degree of the overall structure. This, in turn it thwarts the probabilistic conditions by retaining the original hardware complexity sans critical modifications of Modular Addition 2n.
机译:代数密码分析使用多种代数工具和技术来评估密码系统的安全性,这对于通过开放网络进行的可信通信至关重要。代数密码分析的最新趋势趋向于在逻辑异或运算上使用模块化加法2n作为混合运算符,以防范安全威胁。我们为字段GF(2)上的模块化加法提出了一个新设计的框架,该框架满足常规模块化加法2n的代数性质,尽管具有累积的安全性增强功能和增加的复杂性来应对这些挑战。然而,已经观察到,通过适当地制定多项式方程式和概率条件,可以大大降低模加的复杂度。在本文中,我们为高级模块化加法提出了一个新的扩展设计框架,其特点是用户指定了可扩展的安全性,该安全性不会在现有的密码布局(包括流和分组密码)中强加其他更改。该框架可以快速扩展到特定于用途的需求,从而提高了整体结构的代数程度。反过来,这通过保留原始硬件复杂性和模块化附加2n的关键修改而阻止了概率条件。

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