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Chaos Blend DNA Coding for Image Encryption on FPGA

机译:FPGA上用于图像加密的混沌混合DNA编码

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Looking at the demands of secure communication schemes, new platforms for information security have a significant role in the data protection. In this paper, image encryption on reconfigurable hardware FPGA has been proposed with the confluence of the chaotic map and DNA schemes. Confusion and diffusion were performed with both Chaotic and DNA approaches. The image encryption architecture with 128 × 128 grayscale image which was implemented on Cyclone II FPGA EP2C35F672C6 consumed 23,877 (72%) logic elements, 131,072 (27%) internal M4KRAM memory units with a total thermal power dissipation of 273.55 mW for a test image. NPCR, UACI, Correlation, Uniform distribution and entropy analyses revealed the strength of the proposed scheme which requires a specific bitstream and hardware to retrieve and decrypt the hidden secret image on FPGA.
机译:考虑到安全通信方案的需求,新的信息安全平台在数据保护中起着重要作用。在本文中,结合混沌图谱和DNA方案,提出了在可重构硬件FPGA上的图像加密。使用混沌和DNA方法进行混淆和扩散。在Cyclone II FPGA EP2C35F672C6上实现的具有128×128灰度图像的图像加密架构消耗了23,877(72%)的逻辑元件,131,072(27%)的内部M4KRAM存储单元,用于测试的总热功耗为273.55 mW图像。 NPCR,UACI,相关性,均匀分布和熵分析揭示了所提出方案的强度,该方案需要特定的比特流和硬件才能在FPGA上检索和解密隐藏的秘密映像。

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