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Resiliency Demands on Next Generation Critical Embedded Systems

机译:下一代关键嵌入式系统的弹性需求

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Emerging intelligent systems have stringent constraints including cost and power consumption. When they are used in critical applications, resiliency becomes another key requirement. Much research into techniques for fault tolerance and dependability has been successfully applied to highly critical systems, such as those used in space, where cost is not an overriding constraint. Further, most resiliency techniques were focused on dealing with failures in the hardware and bugs in the software. The next generation of systems used in critical applications will also have to be tolerant to test escapes after manufacturing, soft errors and transients in the electronics, hardware bugs, hardware and software Trojans and viruses, as well as intrusions and other security attacks during operation. This paper will assess the impact of these threats on the results produced by a critical system, and proposed solutions to each of them. It is argued that run-time checks at the application-level are necessary to deal with errors in the results.
机译:新兴智能系统具有严格的约束,包括成本和功耗。当它们用于关键应用时,弹性成为另一个关键要求。已经成功地应用于容错和可靠性的技术的许多研究,以高度关键的系统,例如空间中使用的系统,其中成本不是覆盖约束。此外,大多数弹性技术都集中在处理软件中的硬件和错误中的故障。在关键应用中使用的下一代系统也必须容忍在电子设备,硬件错误,硬件和软件特洛伊木马和病毒中的制造,软错误和瞬态之后测试逃逸,以及在操作期间的入侵和其他安全攻击。本文将评估这些威胁对由关键系统产生的结果的影响,并提出对每个人的解决方案。有人认为,应用程序级别的运行时间检查是处理结果中的错误所必需的。

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