An efficient controller-based architecture for AES algorithm using FPGA

Q2 Mathematics
Reshma Nadaf, Satish S. Bhairannawar
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引用次数: 0

Abstract

The importance of crucial current technical advancements, particularly those centered on the cryptography process such as Cryptographic advanced encryption standard (AES) hardware architectures are gaining momentum with respect to improving the speed and area optimizations. In this paper, we have proposed a novel architecture to implement AES on a reconfigurable hardware i.e., field programmable gate arrays (FPGA). The controller in AES algorithm is responsible to generate the signals to perform operations to generate the 128 bits ciphertext. The proposed controller uses multiplexer and synchronous register-based approach to obtain area and speed efficient on the FPGA hardware. The entire architecture of AES with proposed controller is implemented on Virtex 5, Virtex 6, and Virtex 7series using XilinxISE 14.7 and tested for critical path delay, frequency, slices, efficiency and throughput. It is observed that all the parameters are improved compared to existing architectures achieving the throughput of 32.29, 40.01, and 43.01 Gbps respectively. The key benefit of this approach is the high level of parallelism it displays in a quick and efficient manner.
使用 FPGA 的 AES 算法基于控制器的高效架构
当前重要的技术进步,尤其是以加密过程为中心的技术进步,如加密高级加密标准(AES)硬件架构,在提高速度和优化面积方面的发展势头日益强劲。在本文中,我们提出了一种在可重构硬件(即现场可编程门阵列(FPGA))上实现 AES 的新型架构。AES 算法中的控制器负责生成信号,以执行生成 128 位密码文本的操作。建议的控制器使用多路复用器和基于同步寄存器的方法,以在 FPGA 硬件上获得高效的面积和速度。使用 XilinxISE 14.7 在 Virtex 5、Virtex 6 和 Virtex 7 系列上实现了带有拟议控制器的整个 AES 架构,并对关键路径延迟、频率、切片、效率和吞吐量进行了测试。测试结果表明,与现有架构相比,所有参数都有所提高,吞吐量分别达到 32.29、40.01 和 43.01 Gbps。这种方法的主要优点是以快速高效的方式实现了高水平的并行性。
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来源期刊
CiteScore
2.90
自引率
0.00%
发文量
782
期刊介绍: The aim of Indonesian Journal of Electrical Engineering and Computer Science (formerly TELKOMNIKA Indonesian Journal of Electrical Engineering) is to publish high-quality articles dedicated to all aspects of the latest outstanding developments in the field of electrical engineering. Its scope encompasses the applications of Telecommunication and Information Technology, Applied Computing and Computer, Instrumentation and Control, Electrical (Power), Electronics Engineering and Informatics which covers, but not limited to, the following scope: Signal Processing[...] Electronics[...] Electrical[...] Telecommunication[...] Instrumentation & Control[...] Computing and Informatics[...]
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