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Reliability and Performance of Component Based Software Systems with Restarts, Retries, Reboots and Repairs

机译:基于组件的软件系统的可靠性和性能,重新启动,重试,重新启动和修理

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High reliability and performance are vital for software systems handling diverse mission critical applications. Such software systems are usually component based and may possess multiple levels of fault recovery. A number of parameters, including the software architecture, behavior of individual components, underlying hardware, and the fault recovery measures, affect the behavior of such systems, and there is a need for an approach to study them. In this paper we present an integrated approach for modeling and analysis of component based systems with multiple levels of failures and fault recovery both at the software, as well as the hardware level. The approach is useful to analyze attributes such as overall reliability, performance, and machine availabilities for such systems, wherein failures may happen at the software components, the operating system, or at the hardware, and corresponding restarts, retries, reboots or repairs are used for mitigation. Our approach encompasses Markov chain, and queueing network modeling, for estimating system reliability, machine availabilities and performance. The approach is helpful for designing and building better systems and also while improving existing systems.
机译:高可靠性和性能对于处理各种关键任务应用程序的软件系统至关重要。这种软件系统通常是基于组件的,并且可以具有多个级别的故障恢复。许多参数,包括软件架构,单个组件的行为,底层硬件以及故障恢复措施,影响这种系统的行为,并且需要一种研究它们的方法。在本文中,我们提出了一种综合方法,用于在软件中具有多个级别的故障和故障恢复的基于组件的系统的建模和分析的综合方法,以及硬件级别。该方法可用于分析这些系统的总体可靠性,性能和机器可用性等属性,其中在软件组件,操作系统或硬件处发生故障,并且使用相应的重新启动,重试,重新启动或维修减缓。我们的方法包括Markov链和排队网络建模,用于估算系统可靠性,机器可用性和性能。该方法有助于设计和建立更好的系统,同时改进现有系统。

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