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Design of Hardened Embedded Systems on Multi-FPGA Platforms

机译:多FPGA平台上的强化嵌入式系统设计

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The aim of this article is the definition of a reliability-aware methodology for the design of embedded systems on multi-FPGA platforms. The designed system must be able to detect the occurrence of faults globally and autonomously, in order to recover or to mitigate their effects. Two categories of faults are identified, based on their impact on the device elements; (i) recoverable faults, transient problems that can be fixed without causing a lasting effect namely and (ii) nonrecoverable faults, those that cause a permanent problem, making the portion of the fabric unusable. While some aspects can be taken from previous solutions available in literature, several open issues exist. In fact, no complete design methodology handling all the peculiar issues of the considered scenario has been proposed yet, a gap we aim at filling with our work. The final system exposes reliability properties and increases its overall lifetime and availability.
机译:本文的目的是定义用于多FPGA平台上的嵌入式系统的可靠性感知方法。设计的系统必须能够全局和自治地检测故障的发生,以便恢复或减轻其影响。根据故障对设备元素的影响,可以识别出两类故障。 (i)可恢复的故障,可以在不引起持久影响的情况下解决的暂时性问题,以及(ii)不可恢复的故障,这些永久性问题会导致永久性问题,导致部分织物无法使用。尽管可以从文献中的先前解决方案中获取某些方面,但仍存在一些未解决的问题。实际上,还没有提出一种完整的设计方法来处理所考虑场景的所有特殊问题,我们的目标是填补我们的工作。最终的系统公开了可靠性属性,并增加了其总体寿命和可用性。

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