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Enhanced Security of DSP Circuits Using Multi-Key Based Structural Obfuscation and Physical-Level Watermarking for Consumer Electronics Systems

机译:使用基于多关键的结构混淆和用于消费电子系统的物理级水印的DSP电路的增强安全性

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摘要

Security of Digital Signal Processing (DSP) based Intellectual Property (IP) core is very important for the overall security and reliability of Consumer Electronics (CE) systems. These DSP based IP cores are highly vulnerable to threats such as reverse engineering (RE) leading to Trojan insertion, counterfeiting and cloning. Thus developing robust defense mechanisms is highly significant for these DSP circuits used in CE systems, especially to thwart the aforesaid threats. This article presents for the first time a double line of defense mechanism using robust multi-key based structural obfuscation integrated with tamper-tolerant physical level watermarking to counter such hardware threats. The proposed approach introduces novel key-driven partitioning based obfuscation and key-driven folding knob based obfuscation, along with other key-driven transformation based obfuscations. Additionally, the proposed approach presents novel multi-variable signature encoding based physical-level watermarking on key-based structurally obfuscated DSP circuits. The presented double line of defense incurs zero overhead as well yields high tamper tolerance during hardware watermarking. The proposed approach yields stronger strength of obfuscation, lower probability of co-incidence and larger key-space at low design cost against attacks.
机译:基于数字信号处理(DSP)的知识产权(IP)核心的安全性对于消费电子产品(CE)系统的整体安全性和可靠性非常重要。这些基于DSP的IP核心非常容易受到诸如逆向工程(RE)的威胁,导致特洛伊木马插入,假冒和克隆。因此,开发强大的防御机制对于CE系统中使用的这些DSP电路非常重要,特别是挫败上述威胁。本文首次介绍了一种使用稳健的基于多关键的结构混淆的双向防御机制,与篡改物理级水印集成,以对此硬件威胁进行计数器。所提出的方法引入了基于新的基于键驱动的划分的混淆和基于键驱动的折叠旋钮的混淆,以及其他基于关键驱动的变换的混淆。另外,所提出的方法在基于密钥的结构上混淆的DSP电路上呈现基于基于的物理级水印的新型多变量签名编码。所呈现的双级防御线引起零开销,同时在硬件水印期间产生高篡改公差。该拟议的方法产生更强的混淆强度,在低设计成本下,对攻击的低设计率和更大的关键空间的概率较低。

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