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首页> 外文期刊>International journal of embedded and real-time communication systems >Securing AES Accelerator from Key-Leaking Trojans on FPGA
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Securing AES Accelerator from Key-Leaking Trojans on FPGA

机译:保护AES加速器在FPGA上的钥匙泄漏特洛伊木马

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摘要

Reconfigurable hardware presents a useful platform for building systems with high performance and a secured nature. A new method for protecting 128-bit AES accelerator on FPGA for embedded systems and cloud servers is proposed. One of the major issues faced by the AES accelerator is the security of the key stored inside the FPGA memory. The article proposes a masking scheme which makes the secret key unidentifiable. With the new method of masking scheme, there is no way for an attacker to leak and identify the secret key from the working device through undetected hardware unit. To work with the masked key, a modified key expansion that maintains the throughput through a properly designed multistage pipelining is proposed. The proposed method takes the advantage of reconfigurable computing for flexible and provides security against key-leaking Trojans. The efficiency of the masked AES implementation is found to be 28.5 Mbps, which is 17.87% higher than the existing best wok. The security of the proposed masked scheme is validated through correlation and hamming distance.
机译:可重新配置硬件为具有高性能和安全性的系统提供了一个有用的平台。提出了一种在FPGA上保护128位AES加速器的新方法,用于嵌入式系统和云服务器。 AES加速器面临的主要问题之一是存储在FPGA内存中的密钥的安全性。该文章提出了一种掩盖方案,使秘密关键无法识别。利用新方法的掩蔽方案,攻击者无法通过未检测到的硬件单元泄漏并识别来自工作设备的秘密密钥。为了使用蒙版键,提出了一种通过适当设计的多级流水线维护吞吐量的修改密钥扩展。所提出的方法采用可重新配置计算的优点,用于灵活,并为密钥泄漏的特洛伊木马提供安全性。发现蒙面AES实现的效率是28.5 Mbps,比现有最佳炒锅高出17.87%。通过相关和汉明距离验证所提出的掩蔽方案的安全性。

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