集成体系结构的故障假设

R. Obermaisser, P. Peti
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引用次数: 20

摘要

与联邦系统相比,汽车和航空电子领域的集成体系结构有望提高资源利用率,并实现应用子系统之间更好的策略协调。为了支持对安全至关重要的应用程序子系统,集成体系结构需要支持容错策略,使系统能够在出现故障时继续运行。实现和验证容错策略的基础是一个故障假设,它可以识别故障包含区域、指定故障模式并提供现实的故障率假设。本文提出了一个集成体系结构的故障假设,该假设考虑了多个软件组件在共享节点计算机上的配置。我们主张区分硬件和软件故障的故障控制区域。此外,故障假设描述了考虑到最近半导体趋势的有关瞬态和永久故障各自频率的假设
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A Fault Hypothesis for Integrated Architectures
Integrated architectures in the automotive and avionic domain promise improved resource utilization and enable a better tactic coordination of application subsystems compared to federated systems. In order to support safety-critical application subsystems, an integrated architecture needs to support fault-tolerant strategies that enable the continued operation of the system in the presence of failures. The basis for the implementation and validation of fault-tolerant strategies is a fault hypothesis that identifies the fault containment regions, specifies the failure modes and provides realistic failure rate assumptions. This paper describes a fault hypothesis for integrated architectures, which takes into account the collocation of multiple software components on shared node computers. We argue in favor of a differentiation of fault containment regions for hardware and software faults. In addition, the fault hypothesis describes the assumptions concerning the respective frequencies of transient and permanent failures in consideration of recent semiconductor trends
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