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Fault-tolerant platforms for automotive safety-critical applications

机译:用于汽车安全关键型应用程序的容错平台

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Fault-tolerant electronic sub-systems are becoming a standard requirement in the automotive industrial sector as electronics becomes pervasive in present cars. We address the issue of fault tolerant chip architectures for automotive applications. We begin by reviewing fault-tolerant architectures commonly used in other industrial domains where fault-tolerant electronics has been a must for a number of years, e.g., the aircraft manufacturing industrial sector. We then proceed to investigate how these architecture could be implemented on a single chip and we compare them with a metric that combines traditional terms such as cost, performance and fault coverage with flexibility, i.e. the ability of adapting to changing requirements and capturing a wide range of applications, an emerging criterion for platform design. Finally, we describe in some details a cost effective dual lock-step platform that can be used as a single fail-operational unit or as two fail-silent channels trading fault-tolerance for performance.
机译:随着电子在当今汽车中的普及,容错电子子系统已成为汽车工业领域的标准要求。我们解决了汽车应用中的容错芯片架构问题。我们首先回顾一下容错架构,这些容错架构在其他多年以来一直需要容错电子设备的工业领域中得到了广泛应用,例如飞机制造业。然后,我们继续研究如何在单个芯片上实现这些体系结构,并将它们与结合了传统术语(例如成本,性能和故障覆盖范围)以及灵活性(即适应不断变化的需求和捕获广泛范围的能力)的指标进行比较。应用程序,这是平台设计的新兴标准。最后,我们详细描述了一种经济高效的双锁定步骤平台,该平台可用作单个故障操作单元或两个故障静默通道,以交换容错性能。

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