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Leveraging Weakly-hard Constraints for Improving System Fault Tolerance with Functional and Timing Guarantees

机译:利用弱硬约束,通过功能和时序保证来提高系统容错能力

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Many safety-critical real-time systems operate under harsh environment and are subject to soft errors caused by transient or intermittent faults. It is critical and yet often very challenging to apply fault tolerance techniques in these systems, due to resource limitations and stringent constraints on timing and functionality. In this work, we leverage the concept of weakly-hard constraints, which allows task deadline misses in a bounded manner, to improve system's capability to accommodate fault tolerance techniques while ensuring timing and functional correctness. In particular, we a) quantitatively measure control cost under different deadline hit/miss scenarios and identify weak-hard constraints that guarantee control stability; b) employ typical worst-case analysis (TWCA) to bound the number of deadline misses and approximate system control cost; c) develop an event-based simulation method to check the task execution pattern and evaluate system control cost for any given solution; and d) develop a meta-heuristic algorithm that consists of heuristic methods and a simulated annealing procedure to explore the design space. Our experiments on an industrial case study and synthetic examples demonstrate the effectiveness of our approach.
机译:许多对安全性要求很高的实时系统都在恶劣的环境下运行,并且会遇到由瞬时或间歇性故障引起的软错误。由于资源限制以及对时序和功能的严格限制,在这些系统中应用容错技术是至关重要的,但通常也非常具有挑战性。在这项工作中,我们利用了弱硬约束的概念,该概念允许以有限的方式错过任务期限,从而提高系统适应容错技术的能力,同时确保时序和功能的正确性。特别是,我们:a)在不同的截止日期命中/失败情况下定量测量控制成本,并确定可以保证控制稳定性的弱硬约束; b)采用典型的最坏情况分析(TWCA)来限定最后期限未命中的次数和近似的系统控制成本; c)开发基于事件的仿真方法,以检查任务执行模式并评估任何给定解决方案的系统控制成本; d)开发一种由启发式方法和模拟退火程序组成的元启发式算法,以探索设计空间。我们在工业案例研究中的实验和综合示例证明了我们方法的有效性。

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