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Embedded software reliability for unreliable hardware

机译:嵌入式软件可靠性适用于不可靠的硬件

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While advancements in chip manufacturing technology has accelerated the growth of embedded systems, it has revealed serious reliability and robustness challenges at various abstraction levels that threaten the applicability of scaled technologies [2, 3]. These reliability threats arise from multiple sources, and may result in faults in the hardware. Further-more, these faults in the hardware may have catastrophic effects on the correctness of software execution [9, 11, 14]. This is particularly the case for real-time and timing-critical embedded systems involved in safety-, and mission-critical systems [13]. This occurs because traditional software abstraction layers make the fundamental assumption that the underlying hardware platform is error-free, and completely reliable. This is, however, no longer the case. In order to mitigate various reliability threats, besides hardware-level techniques, it is critical to develop and design resiliency at various layers of the embedded software stack [2, 3].
机译:虽然芯片制造技术的进步加速了嵌入式系统的增长,但它揭示了各种抽象水平的严重可靠性和鲁棒性挑战,威胁到缩放技术的适用性[2,3]。这些可靠性威胁来自多个来源,可能导致硬件中的故障。更重要的是,硬件中的这些故障可能对软件执行的正确性有灾难性影响[9,11,14]。尤其如涉及安全 - 和关键任务系统所涉及的实时和时序关键嵌入式系统的情况[13]。出现这种情况,因为传统的软件抽象层使底层硬件平台无差无差别,并且完全可靠的基本假设。然而,这不再是这种情况。为了减轻各种可靠性威胁,除了硬件级技术之外,在嵌入式软件堆栈的各个层上开发和设计弹性至关重要是至关重要的[2,3]。

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