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Improving the compression and encryption of images using FPGA-based cryptosystems

机译:使用基于FPGA的密码系统改善图像的压缩和加密

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摘要

Compression and encryption technologies are important to the efficient solving of network bandwidth and security issues. A novel scheme, called the Image Compression Encryption Scheme (ICES), is presented. It combines the Haar Discrete Wavelet Transform (DWT), Significance-Linked Connected Component Analysis (SLCCA), and the Advance Encryption Standard (AES). Because of above reason the ICES efficiently reduce the overall processing time. This study develops a novel hardware system to compress and encrypt an image in real-time using an image compression encryption scheme. The proposed system exploits parallel processing to increase the throughout of the cryptosystem for Internet multimedia applications to implement the ICES. Using hardware acceleration for encryption and decryption, the FPGA implementation of DWT, SLCCA and the AES algorithm can be used. Using a pipeline structure, a very high data throughput of 330 Mbit/s at a clock frequency of 40 MHz was obtained. Therefore, the ICES is secure, fast and suited to high speed network protocols such as ATM (Asynchronous Transfer Mode), FDDI (Fiber Distributed Data Interface) or Internet multimedia applications.
机译:压缩和加密技术对于有效解决网络带宽和安全性问题很重要。提出了一种称为图像压缩加密方案(ICES)的新颖方案。它结合了Haar离散小波变换(DWT),重要性链接的连通分量分析(SLCCA)和高级加密标准(AES)。由于上述原因,ICES有效地减少了整体处理时间。这项研究开发了一种新颖的硬件系统,可以使用图像压缩加密方案实时压缩和加密图像。所提出的系统利用并行处理来增加用于因特网多媒体应用以实现ICES的整个密码系统。通过使用硬件加速进行加密和解密,可以使用DWT,SLCCA和AES算法的FPGA实现。使用流水线结构,在40 MHz的时钟频率下获得了330 Mbit / s的非常高的数据吞吐量。因此,ICES是安全,快速的,并且适用于诸如ATM(异步传输模式),FDDI(光纤分布式数据接口)或Internet多媒体应用之类的高速网络协议。

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