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Low power and high-speed FPGA implementation for 4D memristor chaotic system for image encryption

机译:用于图像加密的4D Memristor混沌系统的低功耗和高速FPGA实现

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摘要

In this paper, we proposed a novel low power and high-speed FPGA implementation of the 4D memristor chaotic system with cubic nonlinearity based on Xilinx System Generator (XSG) model. Firstly, a pseudo-random number generator based on the proposed XSG FPGA implementation of the proposed 4D memristor chaotic system which implemented into Xilinx Spartan-6 X6SLX45 board with 32 fixed-point format. The aim of the FPGA implementation is increasing the frequency of the memristor chaotic random number generators. The FPGA implementation of the memristor chaotic system results show that the new design approach achieves a maximum frequency of 393 MHz and dissipates 117 m watt. The standard fifteen randomization tests are used to measure the quality of the proposed pseudo-random number generator based on the 4D memristor chaotic system and it gives an excellent randomization analysis. Also, the gray image encryption scheme based on the 4D memristor chaotic system has been introduced. The proposed cryptosystem has a large keyspace, very low correlation values, high entropy which is much closer to the ideal entropy value, a high number of pixels change rate and high unified average changing intensity values. The results and security analysis of the proposed encryption scheme demonstrate that the investigated encryption approach can protect high speed and high security against various attack.
机译:在本文中,我们提出了一种基于Xilinx系统发生器(XSG)模型的三次非线性的4D忆阻器混沌系统的新型低功率和高速FPGA实现。首先,基于所提出的XSG FPGA实现的伪随机数发生器的提出的4D函数混沌系统,其实现到具有32个定点格式的Xilinx Spartan-6 X6SLX45板中。 FPGA实现的目的正在增加忆阻随机数发电机的频率。 Memitristor混沌系统结果的FPGA实现表明,新的设计方法达到了393 MHz的最大频率,并消散了117米瓦特。标准的十五个随机化测试用于根据4D忆阻器混沌系统测量所提出的伪随机数发生器的质量,并提供出色的随机化分析。此外,已经介绍了基于4D忆阻器混沌系统的灰度图像加密方案。所提出的密码系统具有大的keyspace,相关值非常低,高熵,更靠近理想的熵值,高数量的像素变化率和高统一平均变化强度值。所提出的加密方案的结果和安全分析表明,调查的加密方法可以防止各种攻击的高速和高安全性。

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