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LASE: Latency Aware Simple Encryption for Embedded Systems Security

机译:LASE:用于嵌入式系统安全性的延迟感知简单加密

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摘要

Security in the area of embedded systems has been drawing enormous attention lately. Although recent advances in hardware-based security models have shown promise for faster and more reliable security solutions, particular characteristics of embedded systems, such as computation and energy constraints, pose a unique challenge for the security researchers in this domain. Among hardware-based security models for traditional architectures, the Execute Only Memory (XOM) has used many different block ciphers to provide confidentiality as a part of the security module. However, implementations of many of these block ciphers in hardware do not meet the computation and energy constraints of embedded systems. In this paper, we propose to use a simple instruction encryption mechanism for embedded systems security based on the XOM model. As FPGAs provide reliable low-cost and high-performance implementations of cryptographic primitives, we implement our encryption algorithm on FPGA and compare with existing AES implementations for XOM-based models. The comparison has shown significant improvement on performance and power usage with a moderate level of security and hardware resources.
机译:嵌入式系统领域的安全性最近引起了极大的关注。尽管基于硬件的安全模型的最新进展显示出有望提供更快,更可靠的安全解决方案,但是嵌入式系统的特定特性(例如计算和能量约束)给该领域的安全研究人员带来了独特的挑战。在用于传统体系结构的基于硬件的安全模型中,“仅执行内存(XOM)”已使用许多不同的块密码来提供机密性,作为安全模块的一部分。但是,硬件中许多此类分组密码的实现都无法满足嵌入式系统的计算和能量约束。在本文中,我们建议基于XOM模型使用一种简单的指令加密机制来实现嵌入式系统的安全性。由于FPGA提供了可靠,低成本和高性能的加密原语实现,因此我们在FPGA上实现了加密算法,并与基于XOM的模型的现有AES实现进行了比较。对比显示,在性能和功耗方面都有显着改善,安全和硬件资源水平适中。

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