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A Public-Key Cryptosystem Based On Stochastic Petri Net

机译:基于随机Petri网的公钥密码系统

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In this paper, we present a new method to build public-key Cryptosystem. The method is based on the state explosion problem occurred in the computing of average number of tokens in the places of Stochastic Petri Net (SPN). The reachable markings in the coverability tree of SPN are used as the encryption keys. Accordingly, multiple encryption keys can be generated, thus we can perform multiple encryption to get as strong security as we expect. The decryption is realized through solving a group of ordinary differential equations from Continuous Petri Net (CPN), which has the same underlying Petri net as that of SPN. The decipherment difficulty for attackers is in exponential order. The contribution of this paper is that we can use continuous mathematics to design cryptosystems besides discrete mathematics.
机译:在本文中,我们提出了一种构建公钥加密系统的新方法。该方法基于在随机Petri网(SPN)位置计算平均令牌数时发生的状态爆炸问题。 SPN的可覆盖性树中的可达标记用作加密密钥。因此,可以生成多个加密密钥,因此我们可以执行多个加密,以获得我们期望的强大安全性。解密是通过求解连续Petri网(CPN)的一组常微分方程实现的,该连续Petri网的底层Petri网与SPN的底层Petri网相同。攻击者的破译难度按指数顺序排列。本文的贡献在于,除了离散数学之外,我们还可以使用连续数学来设计密码系统。

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