加密在4位微控制器上是可行的-概念证明

Markus Vogt, A. Poschmann, C. Paar
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引用次数: 16

摘要

射频识别技术与加密算法和协议相结合,作为一种很有前途的产品假冒解决方案被广泛讨论。通常讨论集中在无源低成本rfid标签上,它具有严格的功率限制。4位微控制器具有非常低的功耗特性(5-60 μA),因此是有源和无源低成本rfid标签的有趣平台。据我们所知,到目前为止还没有在4位微控制器上发布加密算法的实现。因此,这项工作的主要贡献是证明加密技术在这些超受限设备上是可行的,并缩小了这一差距。我们选择PRESENT[1]作为加密算法,因为与许多其他密码不同,PRESENT使用4×4 S-Box。我们的实现在1:8V的电源电压和500khz的频率下产生6:7μA的电流,处理一个数据块所需的时间小于200ms。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cryptography is feasible on 4-Bit microcontrollers - A proof of concept
The RFID technology in combination with cryptographic algorithms and protocols is discussed widely as a promising solution against product counterfeiting. Usually the discussion is focussed on passive low-cost RFID-tags, which have harsh power constraints. 4-Bit microcontrollers have very low-power characteristics (5–60 μA) and are therefore an interesting platform for active and passive low-cost RFID-tags. To the best of our knowledge there are no implementations of cryptographic algorithms on a 4-bit microcontroller published so far. Therefore, the main contribution of this work is to demonstrate that cryptography is feasible on these ultra-constrained devices and to close this gap. We chose PRESENT [1] as the cryptographic algorithm, because contrary to many other ciphers, PRESENT uses a 4×4 S-Box. Our implementation draws a current of 6:7μA at a supply voltage of 1:8V and a frequency of 500 KHz and requires less than 200 ms for the processing of one data block.
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