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An analytical method for reliability analysis of hardware-software co-design system

机译:软硬件协同设计系统可靠性分析的一种分析方法

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Hardware-software co-design systems abound in diverse modern application areas such as automobile control, telecommunications, big data processing, and cloud computing. Existing works on reliability modeling of the co-design systems have mostly assumed that hardware and software subsystems behave independently of each other. However, these two subsystems may have significant interactions in practice. In this paper, an analytical approach based on paths and integrals is proposed to analyze reliability of nonrepairable hardware-software co-design systems considering interactions between hardware and software during the system performance degradation and failure process. The proposed approach is verified using the Markov-based method. As demonstrated by case studies on systems without and with warm standby sparing, the proposed approach is applicable to arbitrary types of time-to-failure or degradation distributions. Effects of different transition and fault detection/recovery parameters on system performance are also investigated through examples.
机译:软硬件协同设计系统在汽车控制,电信,大数据处理和云计算等各种现代应用领域中十分丰富。现有的关于协同设计系统的可靠性建模的工作大多假设硬件和软件子系统的行为彼此独立。但是,这两个子系统在实践中可能会有重大的相互作用。本文提出了一种基于路径和积分的分析方法,在系统性能下降和故障过程中考虑了硬件和软件之间的相互作用,分析了不可修复的硬件-软件协同设计系统的可靠性。使用基于马尔可夫的方法对提出的方法进行了验证。正如对不带备用热备用系统的案例研究所证明的那样,所建议的方法适用于任意类型的故障时间或降级分布。还通过示例研究了不同过渡和故障检测/恢复参数对系统性能的影响。

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