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A hybrid Chaos-AES encryption algorithm and its impelmention based on FPGA

机译:基于FPGA的混合混沌AES加密算法及其实现

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In this paper, a hybrid encryption algorithm is proposed. The proposed algorithm combines between AES and Chaos encryption. The proposed algorithm uses a 128-bit key to encrypt as much data as the user requires, benefiting from the pseudo-random behavior of chaotic functions. This structure is similar to the AES but it replaces S-box and add round key stage by XOR operation with a 2-D chaotic generator (the Henon Map). The proposed algorithm requires only one round, giving it an advantage in speed over the AES which requires 10 rounds of encryption. It is implemented using VHDL on the Virtex 5 FPGA platform, achieving a 11.577 Gb/s throughput. The NIST SP. 800-22 statistical test suit is applied to Henon function with post-processing. All tests were passed, showing the random properties of the function. Hence, this technique succeeds in offering the required balance between good security as in the AES and high throughput like in regular chaos encryption techniques.
机译:本文提出了一种混合加密算法。所提出的算法组合在AES和混沌加密之间。所提出的算法使用128位键来加密尽可能多的数据,从混沌功能的伪随机行为中受益。这种结构类似于AES,但它替换了S盒,并通过XOR操作用2-D混沌发生器(HENON MAP)添加圆形键阶段。所提出的算法只需要一个圆形,在需要10轮加密的AES上速度施加优势。它在Virtex 5 FPGA平台上使用VHDL实现,实现了11.577 GB / s吞吐量。 nist sp。 800-22统计测试套装应用于Henon功能,后处理。通过所有测试,显示功能的随机属性。因此,这种技术成功地在良好的安全性和高吞吐量中以常规混沌加密技术提供了良好安全之间所需的平衡。

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