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B-TREPID: Batteryless tamper-resistant envelope with a PUF and integrity detection

机译:B-TREPID:具有PUF和完整性检测功能的无电池防篡改信封

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Protecting embedded devices against physical attacks is a challenging task since the attacker has control of the device in a hostile environment. To address this issue, current countermeasures typically use a battery-backed tamper-respondent envelope that encloses the entire device to create a trusted compartment. However, the battery affects the system's robustness and weight, and also leads to difficulties with the security mechanism while shipping the device. In contrast, we present a batteryless tamper-resistant envelope, which contains a fine mesh of electrodes, and its complementary security concept. An evaluation unit checks the integrity of the sensor mesh by detecting short and open circuits. Additionally, it measures the capacitances of the mesh. Once its preliminary integrity is confirmed, a cryptographic key is derived from the capacitive measurements that represent a PUF, to decrypt and authenticate the firmware of the enclosed host system. We demonstrate the feasibility of our concept, provide details on the layout and electrical properties of the batteryless envelope, and explain the underlying security architecture. Practical results from a set of manufactured envelopes facilitate future research.
机译:保护嵌入式设备免受物理攻击是一项艰巨的任务,因为攻击者可以在敌对环境中控制设备。为了解决此问题,当前的对策通常使用电池支持的防篡改信封将整个设备围起来,以创建一个可信任的隔离专区。但是,电池会影响系统的坚固性和重量,并在运输设备时导致安全机制上的困难。相比之下,我们提出了一种无电池防篡改信封,其中包含细密的电极网及其互补的安全性概念。评估单元通过检测短路和断路来检查传感器网格的完整性。此外,它还可以测量网格的电容。一旦确认其初步完整性,便从代表PUF的电容性测量中得出加密密钥,以解密和认证封闭式主机系统的固件。我们演示了此概念的可行性,提供了有关无电池外壳的布局和电气特性的详细信息,并说明了基本的安全体系结构。一组制成的信封的实际结果有助于将来的研究。

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