Hardware Trojan Design and Its Detection using Side-Channel Analysis on Cryptographic Hardware AES Implemented on FPGA

Bagus Hanindhito, Yusuf Kurniawan
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引用次数: 2

Abstract

Nowadays, an integrated circuit can carry many functions which make them more challenging to design and manufacture. The involvement of the third party is not unusual which can open the possibilities for unauthorized modification by inserting illegal block called hardware trojan to perform some malicious functions. This issue raises attention in the field of hardware security to prevent the insertion of the hardware trojan and to detect its presence in a chip. Side channel analysis is considered as a prospective method, although there are several difficulties encountered. In this paper, we will implement cryptographic hardware that can encrypt information using Advanced Encryption Standards (AES) in a Field Programmable Gate Arrays (FPGA). Then, this reference model is subjected to the implantation of hardware trojan designed to leak the AES key. By using the side channel analysis and by adjusting the behavior of the hardware trojan, we will try to detect its presence using conventional instruments available in our labs. In the end, we can conclude the possibility for the end customer to detect the existence of hardware trojan and the design techniques of hardware trojan to evade the detection.
基于FPGA实现的加密硬件AES的硬件木马设计与检测
如今,集成电路可以承载许多功能,这使得它们的设计和制造更具挑战性。第三方的介入并不罕见,它可以通过插入称为硬件木马的非法块来执行某些恶意功能,从而打开未经授权修改的可能性。防止硬件木马的插入和检测其在芯片中的存在,这一问题引起了硬件安全领域的关注。侧通道分析被认为是一种有前途的方法,尽管遇到了一些困难。在本文中,我们将在现场可编程门阵列(FPGA)中实现可以使用高级加密标准(AES)加密信息的加密硬件。然后,对该参考模型进行了硬件木马的植入,以泄露AES密钥。通过使用侧信道分析和调整硬件木马的行为,我们将尝试使用实验室中可用的传统仪器检测其存在。最后总结了终端用户检测硬件木马存在的可能性,以及硬件木马规避检测的设计技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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