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High throughput and secure advanced encryption standard on field programmable gate array with fine pipelining and enhanced key expansion

机译:高吞吐量和安全的高级加密标准,适用于现场可编程门阵列,具有良好的流水线和增强的密钥扩展能力

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摘要

Aiming at protection of high speed data, field programmable gate array (FPGA)-based advanced encryption standard (AES) design is proposed here. Deep investigation into the logical operations of AES with regard to FPGA architectures leads to two efficient pipelining structures for the AES hardware implementation. The two design options allow users to make a trade-off among speed, resource usage and power consumption. In addition, a new key expansion scheme is proposed to address the potential issues of existing key expansion scheme used in AES. The proposed key expansion scheme with additional non-linear operations increases the complexity of cracking keys by up to 2 times for -round AES. The proposed design is evaluated on various FPGA devices and is compared with several existing AES implementations. In terms of both throughput and throughput per slice, the proposed design can overcome most existing designs and achieves a throughput of 75.9 Gbps on a latest FPGA device. Two parallel implementations of the proposed design can meet the real-time encryption/decryption demand for 100 Gbps data rate. Furthermore, the proposed AES design is implemented on the Zynq xc7z020 FPGA platform, demonstrating its application to image encryption.
机译:为了保护高速数据,本文提出了基于现场可编程门阵列(FPGA)的高级加密标准(AES)设计。对AES关于FPGA架构的逻辑操作的深入研究导致了AES硬件实现的两种有效的流水线结构。这两个设计选项允许用户在速度,资源使用和功耗之间进行权衡。此外,提出了一种新的密钥扩展方案,以解决AES中使用的现有密钥扩展方案的潜在问题。带有附加非线性操作的拟议密钥扩展方案对于全面AES而言,将密钥破解的复杂性提高了2倍。所提出的设计在各种FPGA器件上进行了评估,并与几种现有的AES实现方案进行了比较。就吞吐量和每片吞吐量而言,建议的设计可以克服大多数现有设计,并在最新的FPGA器件上实现75.9 Gbps的吞吐量。拟议设计的两种并行实现可以满足100 Gbps数据速率的实时加密/解密需求。此外,拟议的AES设计在Zynq xc7z020 FPGA平台上实现,证明了其在图像加密中的应用。

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