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OBDD-based evaluation of reliability and importance measures for multistate systems subject to imperfect fault coverage

机译:基于OBDD的不完善故障覆盖范围的多状态系统可靠性和重要性评估方法

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摘要

Algorithms for evaluating the reliability of a complex system such as a multistate fault-tolerant computer system have become more important. They are designed to obtain the complete results quickly and accurately even when there exist a number of dependencies such as shared loads (reconfiguration), degradation, and common-cause failures. This paper presents an efficient method based on ordered binary decision diagram (OBDD) for evaluating the multistate system reliability and the Griffith's importance measures which can be regarded as the importance of a system-component state of a multistate system subject to imperfect fault-coverage with various performance requirements. This method combined with the conditional probability methods can handle the dependencies among the combinatorial performance requirements of system modules and find solutions for multistate imperfect coverage model. The main advantage of the method is that its time complexity is equivalent to that of the methods for perfect coverage model and it is very helpful for the optimal design of a multistate fault-tolerant system.
机译:用于评估诸如多状态容错计算机系统之类的复杂系统的可靠性的算法变得越来越重要。即使存在许多依赖关系,例如共享负载(重新配置),降级和常见原因故障,它们也可以快速,准确地获得完整的结果。本文提出了一种基于有序二进制决策图(OBDD)的有效方法,用于评估多状态系统的可靠性和格里菲斯的重要性测度,该重要性测度可被视为具有不完善故障覆盖率的多状态系统的系统组件状态的重要性。各种性能要求。该方法与条件概率方法相结合,可以处理系统模块的组合性能要求之间的依赖关系,并找到多状态不完全覆盖模型的解决方案。该方法的主要优点是其时间复杂度与完善覆盖模型的方法相当,对于多状态容错系统的优化设计非常有帮助。

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