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DEPEND: a simulation-based environment for system level dependability analysis

机译:DEPEND:用于系统级可靠性分析的基于仿真的环境

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The paper presents the rationale for a functional simulation tool, called DEPEND, which provides an integrated design and fault injection environment for system level dependability analysis. The paper discusses the issues and problems of developing such a tool, and describes how DEPEND tackles them. Techniques developed to simulate realistic fault scenarios, reduce simulation time explosion, and handle the large fault model and component domain associated with system level analysis are presented. Examples are used to motivate and illustrate the benefits of this tool. To further illustrate its capabilities, DEPEND is used to simulate the Unix-based Tandem triple-modular-redundancy (TMR) based prototype fault-tolerant system and to evaluate how well it handles near-coincident errors caused by correlated and latent faults. Issues such as memory scrubbing, re-integration policies, and workload dependent repair times, which affect how the system handles near-coincident errors, are also evaluated. Unlike any other simulation-based dependability studies, the accuracy of the simulation model is validated by comparing the results of the simulations with measurements obtained from fault injection experiments conducted on a production Tandem machine.
机译:本文介绍了称为DEPEND的功能仿真工具的原理,该工具为系统级的可靠性分析提供了集成的设计和故障注入环境。本文讨论了开发这种工具的问题,并描述了DEPEND如何解决它们。提出了用于仿真现实故障场景,减少仿真时间爆炸并处理与系统级别分析相关的大型故障模型和组件域的技术。使用示例来激发和说明此工具的好处。为了进一步说明其功能,DEPEND用于模拟基于Unix的串联三模冗余(TMR)原型容错系统,并评估其处理相关和潜在故障引起的近偶然错误的能力。还评估了诸如内存清理,重新集成策略以及与工作负载相关的修复时间之类的问题,这些问题会影响系统处理接近一致的错误的方式。与任何其他基于仿真的可靠性研究不同,该仿真模型的准确性是通过将仿真结果与在生产串联机器上进行的故障注入实验获得的测量结果进行比较来验证的。

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