首页> 外文期刊>Multi-Scale Computing Systems, IEEE Transactions on >A Built-in-Self-Test Scheme for Online Evaluation of Physical Unclonable Functions and True Random Number Generators
【24h】

A Built-in-Self-Test Scheme for Online Evaluation of Physical Unclonable Functions and True Random Number Generators

机译:在线评估物理不可克隆函数和真实随机数生成器的内置自测方案

获取原文
获取原文并翻译 | 示例
       

摘要

In the emerging era of Internet of Things (IoT) where various physical entities are spontaneously communicating with each other and sharing sensitive information, it is prohibitive to have a global entity for maintaining the security of the complex web against environmental variations and active attacks. Therefore, it is crucial that each entity has the capability of safeguarding its security features on its own. Methods based on harnessing the random identification and authentication from the physical device and environment, such as physical unclonable functions (PUFs) and True Random Number Generators (TRNGs), if securely run, are promising primitives for protecting lightweight IoT devices. This paper presents the first Built-In-Self-Test scheme for on-the-fly evaluation of PUFs that can also be utilized for assessing the desired statistical properties of TRNGs. Unlike earlier known PUF evaluation suites that were software-based and offline, our methodology enables online assessment of the pertinent statistical and security properties all in hardware. Specifically, the BIST structure is designed to evaluate two main properties of PUFs: unpredictability and stability. Our work is the first online test suite that thoroughly evaluates the internal health of the entropy source of TRNGs along with the statistical properties of the generated bit stream. Comprehensive real-time evaluation by the BIST method is able to ensure robustness and security of both TRNG and PUF in the face of operational, structural, and environmental fluctuations due to variations, aging, or adversarial acts. Proof-of-concept implementation of our BIST methodology in FPGA demonstrates its reasonable overhead, effectiveness, and practicality.
机译:在物联网(IoT)的新兴时代中,各种物理实体彼此自发通信并共享敏感信息,因此禁止拥有一个全球性实体来维护复杂Web的安全性以抵御环境变化和主动攻击是不可行的。因此,至关重要的是,每个实体都有能力自行维护其安全功能。如果能够安全地运行基于物理设备和环境中的随机标识和身份验证的方法(例如物理不可克隆功能(PUF)和真实随机数生成器(TRNG)),则这些方法有望保护轻量级IoT设备。本文介绍了第一个内置的自我测试方案,用于快速评估PUF,该方案也可用于评估所需的TRNG统计特性。与较早的已知PUF评估套件(基于软件和脱机)不同,我们的方法可以在线评估硬件中所有相关的统计和安全属性。具体来说,BIST结构旨在评估PUF的两个主要属性:不可预测性和稳定性。我们的工作是第一个在线测试套件,它可以彻底评估TRNG熵源的内部运行状况以及生成的比特流的统计属性。通过BIST方法进行的全面实时评估能够确保TRNG和PUF的稳健性和安全性,以应对由于变化,老化或对抗行为而造成的运营,结构和环境波动。我们的BIST方法在FPGA中的概念验证实现证明了其合理的开销,有效性和实用性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号