Synthesis of fault-tolerant embedded systems with checkpointing and replication

V. Izosimov, P. Pop, P. Eles, Zebo Peng
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引用次数: 26

Abstract

We present an approach to the synthesis of fault-tolerant hard real-time systems for safety-critical applications. We use checkpointing with rollback recovery and active replication for tolerating transient faults. Processes are statically scheduled and communications are performed using the time-triggered protocol. Our synthesis approach decides the assignment of fault-tolerance policies to processes, the optimal placement of checkpoints and the mapping of processes to processors such that transient faults are tolerated and the timing constraints of the application are satisfied. We present several synthesis algorithms which are able to find fault-tolerant implementations given a limited amount of resources. The developed algorithms are evaluated using extensive experiments, including a real-life example
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具有检查点和复制的容错嵌入式系统的综合
我们提出了一种用于安全关键应用的容错硬实时系统的综合方法。我们使用带有回滚恢复和主动复制的检查点来容忍瞬态故障。进程是静态调度的,通信是使用时间触发协议执行的。我们的综合方法决定了对流程的容错策略的分配、检查点的最佳位置以及流程到处理器的映射,以便容忍瞬态故障并满足应用程序的时间约束。我们提出了几种能够在有限资源下找到容错实现的综合算法。开发的算法通过广泛的实验进行评估,包括一个现实生活中的例子
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