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Emulation-based design evaluation of reader/smart card systems

机译:读卡器/智能卡系统的基于仿真的设计评估

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Design exploration and evaluation are essential tasks during a product's development cycle. Simulation and hardware emulation are common techniques to explore and evaluate the functionality of hardware/software designs. However, when it comes to distributed secure applications, like contactless reader/smart card systems, non-functional design properties and system aspects (e.g., conctactless power transfer, power consumption) have to be regarded too. State-of-the-art simulation-based and emulation-based design exploration tools cover these design issues and system aspects only to some extent. Here we present a design exploration framework for complete reader/smart card systems using state-of-the-art model-based emulation and estimation techniques. This novel system-based approach is of high importance because of the high availability of battery powered mobile readers (i.e. smart phones) and novel mobile application fields. Contactless power transfer and power consumption analyses of reader and smart cards can be performed for each clock cycle and in real time. Thus, novel system-level power and security optimization techniques can be evaluated considering the reader/smart card system as a whole. We demonstrate the application of our exploration framework by means of a typical Diffie-Hellman key exchange between reader and smart card and highlight power optimization possibilities.
机译:在产品开发周期中,设计探索和评估是必不可少的任务。仿真和硬件仿真是探索和评估硬件/软件设计功能的常用技术。但是,当涉及到分布式安全应用程序(例如非接触式读卡器/智能卡系统)时,也必须考虑非功能性设计属性和系统方面(例如,无约束功率传输,功耗)。最新的基于仿真和基于仿真的设计探索工具仅在某种程度上涵盖了这些设计问题和系统方面。在这里,我们使用基于模型的最新仿真和估计技术,为完整的读卡器/智能卡系统提供了一个设计探索框架。由于电池供电的移动阅读器(即智能电话)和新颖的移动应用领域的高可用性,因此这种基于系统的新颖方法非常重要。可以在每个时钟周期内实时执行读取器和智能卡的非接触式功率传输和功耗分析。因此,可以整体上考虑读卡器/智能卡系统来评估新颖的系统级电源和安全性优化技术。我们通过在读卡器和智能卡之间进行典型的Diffie-Hellman密钥交换来演示我们的探索框架的应用,并重点介绍功率优化的可能性。

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