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Bridging the Gap between Resilient Networks-on-Chip and Real-Time Systems

机译:桥接弹性网络和实时系统之间的差距

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Conventional fault-tolerance approaches for Networks-on-Chip (NoCs) cannot be applied to high dependability systems due to their different goals and constraints. These systems impose strict integrity, resilience and real-time requirements. In order to meet these requirements, all possible effects of random hardware errors must be taken into account, silent data corruption must be prevented and the resulting system must be predictable in the presence of errors. In this paper, we present a wormhole-switched NoC with virtual channels for high dependability systems hardened against soft errors. The NoC is developed based on results of a Failure Mode and Effects Analysis. It efficiently handles errors in different network layers and operates with formal guarantees. Our experimental evaluation, including an industrial avionics use case, shows that the network is able to achieve predictable behavior even in aggressive environments with very high error rates while presenting competitive overheads.
机译:由于其不同的目标和约束,芯片上芯片(NOCS)的传统容错方法不能应用于高可靠性系统。这些系统施加严格的完整性,弹性和实时要求。为了满足这些要求,必须考虑所有可能的随机硬件错误的影响,必须防止静默数据损坏,并且生成的系统必须在错误存在下可预测。在本文中,我们介绍了一种具有虚拟通道的虫洞切换的NOC,用于高可靠性系统硬化软误差。 NOC是基于故障模式的结果和效果分析的结果开发的。它有效地处理不同网络层中的错误,并以正式的保证运行。我们的实验评估包括工业航空电子设备用例,表明,即使在呈现竞争高架的竞争率非常高的攻击性环境中,网络也能够实现可预测的行为。

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