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首页> 外文期刊>International Journal of Reliability, Quality and Safety Engineering >Dependability Analysis of Homogeneous Distributed Software/Hardware Systems
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Dependability Analysis of Homogeneous Distributed Software/Hardware Systems

机译:异构分布式软件/硬件系统的可靠性分析

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摘要

With the increasing demand for high availability in safety-critical systems such as banking systems, military systems, nuclear systems, aircraft systems to mention a few, reliability analysis of distributed software/hardware systems continue to be the focus of most researchers. The reliability analysis of a homogeneous distributed software/hardware system (HDSHS) with k-out-of-n: G configuration and no load-sharing nodes is analyzed. However, in practice the system load is shared among the working nodes in a distributed system. In this paper, the dependability analysis of a HDSHS with load-sharing nodes is presented. This distributed system has a load-sharing k-out-of-(n + m) : G configuration. A Markov model for HDSHS is developed. The failure time distribution of the hardware is represented by the accelerated failure time model. The software faults are detected during software testing and removed upon failure. The Jelinski-Moranda software reliability model is used. The maintenance personal can repair the system up on both software and hardware failure. The dependability measures such as reliability, availability and mean time to failure are obtained. The effect of load-sharing hosts on system hazard function and system reliability is presented. Furthermore, an availability comparison of our results and the results in the literature is presented.
机译:随着诸如银行系统,军事系统,核系统,飞机系统等对安全至关重要的系统对高可用性的需求不断增加,对分布式软件/硬件系统的可靠性分析仍然是大多数研究人员关注的焦点。分析了k-out-n:G配置且无负载共享节点的同质分布式软件/硬件系统(HDSHS)的可靠性分析。但是,实际上,系统负载是在分布式系统中的工作节点之间共享的。本文提出了具有负载共享节点的HDSHS的可靠性分析。此分布式系统具有(n + m):G配置的负载分担k。开发了用于HDSHS的马尔可夫模型。硬件的故障时间分布由加速故障时间模型表示。在软件测试期间会检测到软件故障,并在故障后将其消除。使用Jelinski-Moranda软件可靠性模型。维护人员可以修复软件和硬件故障。获得可靠性度量,例如可靠性,可用性和平均故障时间。提出了负载分担主机对系统危害功能和系统可靠性的影响。此外,提出了我们的结果和文献中的结果的可用性比较。

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