Fault-tolerant deployment of embedded software for cost-sensitive real-time feedback-control applications

C. Pinello, L. Carloni, A. Sangiovanni-Vincentelli
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引用次数: 80

Abstract

Designing cost-sensitive real-time control systems for safety-critical applications requires a careful analysis of the cost/coverage trade-offs of fault-tolerant solutions. This further complicates the difficult task of deploying the embedded software that implements the control algorithms on the execution platform that is often distributed around the plant (as it is typical, for instance, in automotive applications). We propose a synthesis-based design methodology that relieves the designers from the burden of specifying detailed mechanisms for addressing platform faults, while involving them in the definition of the overall fault-tolerance strategy. Thus, they can focus on addressing plant faults within their control algorithms, selecting the best components for the execution platform, and defining an accurate fault model. Our approach is centered on a new model of computation, fault tolerant data flows (FTDF), that enables the integration of formal validation techniques.
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对成本敏感的实时反馈控制应用的嵌入式软件容错部署
为安全关键型应用设计成本敏感型实时控制系统需要仔细分析容错解决方案的成本/覆盖权衡。这进一步使部署嵌入式软件的困难任务变得复杂,嵌入式软件在执行平台上实现控制算法,这些执行平台通常分布在工厂周围(例如,在汽车应用程序中很典型)。我们提出了一种基于综合的设计方法,该方法减轻了设计人员指定解决平台故障的详细机制的负担,同时使他们参与到总体容错策略的定义中。因此,他们可以专注于解决控制算法中的工厂故障,为执行平台选择最佳组件,并定义准确的故障模型。我们的方法以一种新的计算模型为中心,即容错数据流(FTDF),它可以集成正式验证技术。
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