Quantifying the reliability of proven SPIDER group membership service guarantees

Elizabeth Latronico, P. Miner, P. Koopman
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引用次数: 16

Abstract

For safety-critical systems, it is essential to quantify the reliability of the assumptions that underlie proven guarantees. We investigate the reliability of the assumptions of the SPIDER group membership service with respect to transient and permanent faults. Modeling 12,600 possible system configurations, the probability that SPIDER's maximum fault assumption does not hold for an hour mission varies from less likely than l0/sup -11/ to more likely than 10/sup -3/. In most cases examined, a transient fault tolerance strategy was superior to the permanent fault tolerance strategy previously in use for the range of transient fault arrival rates expected in aerospace systems. Reliability of the maximum fault assumption (upon which the proofs are based) differs greatly when subjected to asymmetric, symmetric, and benign faults. This case study demonstrates the benefits of quantifying the reliability of assumptions for proven properties.
量化已验证的SPIDER组成员服务保证的可靠性
对于安全关键型系统,有必要量化作为已证明保证基础的假设的可靠性。我们研究了蜘蛛组成员服务在瞬态和永久故障方面假设的可靠性。通过建模12,600种可能的系统配置,SPIDER的最大故障假设在一小时任务中不成立的概率从小于10/sup -11/到大于10/sup -3/不等。在大多数情况下,暂态容错策略优于先前在航空航天系统中使用的暂态故障到达率范围内的永久容错策略。当遭受不对称、对称和良性故障时,最大故障假设(证明的基础)的可靠性差别很大。这个案例研究证明了量化已证实属性假设的可靠性的好处。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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