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Tamper-Resistant Security for Cyber-Physical Systems with eTRON Architecture

机译:具有eTRON架构的网络物理系统的防篡改安全性

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This article posits tamper-resistance as a necessary security measure for cyber-physical systems (CPS). With omnipresent connectivity and pervasive use of mobile devices, software security alone is arguably not sufficient to safeguard sensitive digital information we use everyday. As a result, utilization of a variety of tamper-resistant devices - including smartcards, secure digital cards with integrated circuits, and mobile phones with subscriber identity module - has become standard industry practice. Recognizing the need for effective hardware security alongside software security, in this paper, we present the eTRON architecture - at the core of which lies the tamper-resistant eTRON chip, equipped with functions for mutual authentication, encrypted communication and access control. Besides the security features, the eTRON architecture also offers a wide range of functionalities through a coherent set of application programming interfaces (API) leveraging tamper-resistance. In this paper, we discuss various features of the eTRON architecture, and present two representative eTRON-based applications with a view to evaluating its effectiveness by comparing with other existing applications.
机译:本文将防篡改假定为网络物理系统(CPS)的必要安全措施。由于无处不在的连接性和移动设备的广泛使用,仅软件安全性就不足以保护我们每天使用的敏感数字信息。结果,利用各种防篡改设备,包括智能卡,带有集成电路的安全数字卡以及带有用户识别模块的移动电话,已成为标准的行业惯例。认识到有效的硬件安全性与软件安全性的结合,在本文中,我们介绍了eTRON架构-防篡改eTRON芯片是其核心,该芯片具有相互认证,加密通信和访问控制的功能。除安全性功能外,eTRON架构还通过利用防篡改功能的一组连贯的应用程序编程接口(API)提供了广泛的功能。在本文中,我们讨论了eTRON架构的各种功能,并提出了两个基于eTRON的代表性应用,旨在通过与其他现有应用进行比较来评估其有效性。

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