Analysis and optimization of soft error tolerance strategies for real-time systems

Bowen Zheng, Yue Gao, Qi Zhu, S. Gupta
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引用次数: 20

Abstract

The safety of real-time embedded systems relies on both functional and timing correctness. On the timing side, realtime constraints are set on task executions, and missing them may lead to system failure. On the functional side, soft errors have become a major concern. Various soft error tolerance strategies are proposed for soft error detection and recovery, however they may introduce significant computation overhead and cause timing violations. In this work, we address the two aspects in an integrated framework, and propose a set of formulations to quantitatively model the impact of soft error detection and recovery mechanisms on real-time constraints. The formulations facilitate designers to analyze system feasibility under fault tolerance requirements and compare various architecture platforms. They may also help select the appropriate error tolerance mechanisms for software tasks, together with exploring task scheduling and allocation on representative single-core, multicore and distributed platforms, to maximize error coverage while meeting real-time constraints. Experiments on an industrial case study and synthetic examples demonstrate the effectiveness of our approach.
实时系统软容错策略的分析与优化
实时嵌入式系统的安全性依赖于功能和时间的正确性。在计时方面,对任务执行设置了实时约束,缺少这些约束可能会导致系统故障。在功能方面,软错误已成为一个主要问题。针对软错误检测和恢复,提出了各种软容错策略,但是它们可能会引入大量的计算开销并导致时间冲突。在这项工作中,我们在一个集成的框架中解决了这两个方面,并提出了一套公式来定量模拟软错误检测和恢复机制对实时约束的影响。这些公式便于设计者分析系统在容错要求下的可行性,并对各种架构平台进行比较。它们还可以帮助为软件任务选择合适的容错机制,以及探索具有代表性的单核、多核和分布式平台上的任务调度和分配,在满足实时约束的同时最大限度地提高错误覆盖率。工业案例研究和综合实例的实验证明了该方法的有效性。
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