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首页> 外文期刊>ACM transactions on reconfigurable technology and systems >POWER-MODES: POWer-EmulatoR- and MOdel-Based DEpendability and Security Evaluations
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POWER-MODES: POWer-EmulatoR- and MOdel-Based DEpendability and Security Evaluations

机译:功率模式:基于功率-EmulatoR和MODel的可扩展性和安全性评估

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摘要

Innovation cycles have been shortening significantly during the last years. This process puts tremendous pressure on designers of embedded systems for security-or reliability-critical applications. Eventual design problems not detected during design time can lead to lost money, confidentiality, or even loss of life in extreme cases. Therefore it is of vital importance to evaluate a new system for its robustness against intentionally and random induced operational faults. Currently this is generally done using extensive simulation runs using gate-level models or direct measurements on the finished silicon product. These approaches either need a significant amount of time and computational power for these simulations or rely on existing product samples. This article presents a novel system evaluation platform using power emulation and fault injection techniques to provide an additional tool for developers of embedded systems in security-and reliability-critical fields. Faults are emulated using state-of-the-art fault injection methods and a flexible pattern representation approach. The resulting effects of these faults on the power consumption profile are estimated using state-of-the-art power emulation hardware. A modular system augmentation approach provides emulation flexibility similar to fault simulation implementations. The platform enables the efficient evaluation of new hardware or software implementations of critical security or reliability solutions at an early development phase.
机译:在过去几年中,创新周期已大大缩短。此过程对安全性或可靠性至关重要的应用程序给嵌入式系统的设计人员带来了巨大压力。在设计期间未发现的最终设计问题可能会导致金钱,机密性甚至在极端情况下丧命。因此,评估新系统对有意和随机引起的操作故障的鲁棒性至关重要。当前,这通常是通过使用门级模型的广泛模拟运行或对成品硅产品的直接测量来完成的。这些方法或者需要大量的时间和计算能力来进行这些模拟,或者依赖于现有的产品样本。本文介绍了一种使用电源仿真和故障注入技术的新型系统评估平台,为安全性和可靠性至关重要的嵌入式系统开发人员提供了额外的工具。使用最新的故障注入方法和灵活的模式表示方法来模拟故障。这些故障对功耗曲线的最终影响是使用最新的电源仿真硬件来估算的。模块化系统扩充方法提供类似于故障仿真实现的仿真灵活性。该平台可在早期开发阶段高效评估关键安全性或可靠性解决方案的新硬件或软件实现。

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