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Physically Unclonable Digital ID

机译:身体上不可渗透的数字ID

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The Center for Strategic and International Studies estimates the annual cost from cyber crime to be more than $400 billion. Most notable is the recent digital identity thefts that compromised millions of accounts. These attacks emphasize the security problems of using clonable static information. One possible solution is the use of a physical device known as a Physically Unclonable Function (PUF). PUFs can be used to create encryption keys, generate random numbers, or authenticate devices. While the concept shows promise, current PUF implementations are inherently problematic: inconsistent behavior, expensive, susceptible to modeling attacks, and permanent. Therefore, we propose a new solution by which an unclonable, dynamic digital identity is created between two communication endpoints such as mobile devices. This Physically Unclonable Digital ID (PUDID) is created by injecting a data scrambling PUF device at the data origin point that corresponds to a unique and matching descrambler/hardware authentication at the receiving end. This device is designed using macroscopic, intentional anomalies, making them inexpensive to produce. PUDID is resistant to cryptanalysis due to the separation of the challenge response pair and a series of hash functions. PUDID is also unique in that by combining the PUF device identity with a dynamic human identity, we can create true two-factor authentication. We also propose an alternative solution that eliminates the need for a PUF mechanism altogether by combining tamper resistant capabilities with a series of hash functions. This tamper resistant device, referred to as a Quasi-PUDID (Q-PUDID), modifies input data, using a black-box mechanism, in an unpredictable way. By mimicking PUF attributes, Q-PUDID is able to avoid traditional PUF challenges thereby providing high-performing physical identity assurance with or without a low performing PUF mechanism. Three different application scenarios with mobile devices for PUDID and Q-PUDI- have been analyzed to show their unique advantages over traditional PUFs and outline the potential for placement in a host of applications.
机译:战略和国际研究中心估计网络犯罪的年度成本超过4000亿美元。最值得注意的是最近损害了数百万个帐户的数字身份盗窃。这些攻击强调使用克隆静态信息的安全问题。一种可能的解决方案是使用称为物理不可渗透功能(PUF)的物理设备。 PUF可用于创建加密密钥,生成随机数或身份验证设备。虽然概念显示承诺,但目前的PUF实现本质上是有问题的:不一致的行为,昂贵,易感攻击和永久性。因此,我们提出了一种新的解决方案,通过该解决方案是在诸如移动设备的两个通信端点之间产生不可渗透的动态数字身份。这种物理上不可渗透的数字ID(Pudid)是通过在数据来源点注入对应于接收端的唯一和匹配的解扰器/硬件认证的数据载体PUF设备来创建的。该设备采用宏观设计,故意异常设计,使其廉价生产。由于挑战反应对的分离和一系列散列功能,Pudid对密码分析抵抗。 Pudid也是独一无二的,因为通过将PUF设备标识与动态人类身份组合,我们可以创建真正的双因素身份验证。我们还提出了一种替代解决方案,其通过将篡改能力与一系列散列功能组合来完全消除了PUF机制的需求。这种防篡改装置称为准pudid(q-pudid),以不可预测的方式使用黑盒机制修改输入数据。通过模拟PUF属性,Q-Pudid能够避免传统的PUF挑战,从而提供高性能的物理身份保证,或没有低执行的PUF机制。已经分析了具有Pudid和Q-Pudi的移动设备的三种不同的应用方案 - 已经分析了与传统PUF的独特优势,并概述了在一系列应用中放置的潜力。

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