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VOLtA: Voltage over-scaling based lightweight authentication for IoT applications

机译:VOLtA:针对物联网应用的基于电压超标的轻量认证

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Incorporating security protocols in IoT components is challenging due to their extremely constrained resources. We address this challenge by proposing a hardware-oriented lightweight authentication protocol based on device signature generated during voltage over-scaling (VOS). First, we demonstrate that VOS-based computing leaves a process variation dependent error signature in its approximate results. This error can be methodically profiled to extract information about the underlying process variation in the computation unit. We then combine this error profile with security key based authentication schemes to create a two-factor authentication mechanism. To understand the effectiveness of this protocol, we perform detailed security analysis under various attack scenarios. Finally, we simulate the authentication hardware using a process variation aware 45nm design library in HSpice. Simulation results show that our VOS-based assumptions are valid, and this authentication mechanism can withstand basic environmental variations. Overall, our approach provides a unique approach for using hardware process variations as a key for authentication.
机译:由于其资源极为有限,因此将安全协议整合到物联网组件中具有挑战性。我们通过提出一种基于电压超标(VOS)期间生成的设备签名的面向硬件的轻量认证协议来应对这一挑战。首先,我们证明基于VOS的计算在其近似结果中留下了与过程变化有关的错误签名。可以系统地分析此错误,以提取有关计算单元中基础过程变化的信息。然后,我们将此错误配置文件与基于安全密钥的身份验证方案结合起来,以创建一种两因素身份验证机制。为了了解该协议的有效性,我们在各种攻击情形下进行了详细的安全性分析。最后,我们在HSpice中使用可识别工艺差异的45nm设计库来仿真身份验证硬件。仿真结果表明,我们基于VOS的假设是有效的,并且这种身份验证机制可以承受基本的环境变化。总体而言,我们的方法提供了一种独特的方法,可将硬件工艺变化用作身份验证的密钥。

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