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Design and Validation of Fault-tolerant Embedded Controllers

机译:容错嵌入式控制器的设计与验证

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Embedded control systems are an important and often safety-critical class of applications that need to operate reliably even in the presence of faults. We show that intermittent fault scenarios caused by wear-out effects due to a higher density and a smaller geometry of the embedded electronic components may become a reliability concern for real-time embedded control applications. To mitigate the effects of such intermittent faults, we propose a novel fault-tolerant controller design method such that the resulting controllers ensure closed loop stability (i.e., guarantee safety) with only possibly degraded performance under such fault scenarios. In order to measure the amortized performance offered by the software implementations of such fault-tolerant controllers, we provide a program analysis methodology that statically estimates the quality of control guaranteed by the C code implementation of the fault-tolerant control law. This combination of fault-tolerant controller design followed by performance feedback computed using a formal analysis is illustrated with a case study from the automotive domain.
机译:嵌入式控制系统是一种重要的且经常安全关键的应用程序,即使在存在故障的情况下也需要可靠地运行。我们表明由于较高的密度和嵌入式电子元件的较小几何形状导致的磨损效应引起的间歇性故障场景可能成为实时嵌入式控制应用的可靠性问题。为了减轻这种间歇性故障的影响,我们提出了一种新的容错控制器设计方法,使得所得到的控制器确保闭环稳定性(即,保证安全),只有在这种故障方案下的性能下降。为了测量这种容错控制器的软件实现提供的摊销性能,我们提供了一个程序分析方法,静态估计了容错控制法的C代码的控制质量。这种容错控制器设计的组合随后使用正式分析计算的性能反馈,用汽车域中的案例研究说明。

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