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Design of Key Space Based on CPRS Algorithm

机译:基于CPRS算法的关键空间设计

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Designing the key space based on the initial value xi, system parameter ui and coupling coefficient εi (i=1, 2... m, m is the dimension of hyperchaotic system). By theoretical analysis and practical test, the sensitivity of initial value xi is 10-16, the sensitivity of coupling coefficient εi is 10-15, the sensitivity of system parameter ui is 10-13, so the initial value and coupling coefficient are used as the parameters of designing the key space and the total number of the key space in one-dimensional system is 1031. Each node has different initial values and coupling coefficients in m-dimensional CPRS hyperchaotic system, so the total number of key space in m-dimensional system is 10 31*m. The design consists of an "S_Box" algorithm and two different valuing algorithms. The "S_Box" algorithm adopts BKDRHash function due to the Hash function which has minor conflict and make the value distribution uniform in the "S_Box" and two different valuing algorithms obtain the initial value and coupling coefficient desired in the encryption system. The experimental results show that the three algorithms obtaining the values is well distributed and improve the performance of anti-cracking. The Passwords that users input map into different parameters through the key space by which CPRS hyperchaotic system transmitting terminal encrypts and the receiving terminal can be decrypted successfully using the same parameters.
机译:设计基于初始值Xi的密钥空间,系统参数u i和耦合系数εI(I = 1,2,... M,M是超混沌系统的尺寸)。通过理论分析和实际测试,初始值xi的灵敏度是10-16,耦合系数εI为10-15,系统的灵敏度参数UI是10-13的灵敏度,因此初始值和耦合系数被用作在一维系统中的密钥空间和密钥空间的总数设计的参数是1031每个节点具有在m维CPRS不同的初始值和耦合系数超混沌系统,所以密钥空间中间总数维系统是10 31 *米。该设计包括一个“S_Box”算法和两种不同的价值评估算法。所述“S_Box”算法采用BKDRHash功能由于其具有较小的冲突,并在“S_Box”和两个不同价值评估算法的值分布均匀的获得在加密系统所希望的初始值和耦合系数的哈希函数。实验结果表明,这三种算法获得的值分布均匀,提高抗裂性能。的口令,通过由CPRS超混沌系统发送终端加密密钥空间的用户输入映射到不同的参数和接收终端可以成功地使用相同的参数进行解密。

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