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Early prediction of reliability and availability of combined hardware-software systems based on functional failures

机译:基于功能故障的组合硬件软件系统的可靠性和可用性早期预测

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Interactions among software and hardware components play an important role in successful operation of a system. Researchers have identified two types of interaction failures: software failure influenced by hardware breakdown (hardware-driven software failure) and hardware failure influenced by software malfunction (software-driven hardware failure). The existing research in this domain either has not considered the entire spectrum of interaction failures or limited their work to mere failure analysis rather than reliability/availability modeling. In this paper, we are proposing a unified model to predict the worst case achievable reliability/availability of hardware-software combined system at early design phases. The proposed model identifies system functions from the requirements specification document. Then, these functions are mapped to corresponding conceptual design components. Subsequently, the functional design is simulated for sets of input data that have been randomly generated for different operation modes (failure/working) of the components. We also simulate system state transition due to the component operation modes. Finally, reliability and availability is predicted from simulation results. In this context, we address four important aspects: i) proposing a conceptual design based early reliability/availability prediction model, ii) apart from individual hardware-software component failure, the proposed model addresses different interaction failures such as, hardware-driven software and software-driven hardware failures, iii) implementing the proposed model through a case study, and iv) validating the model by comparing the obtained reliability/availability value using the proposed approach with an established method.
机译:软件和硬件组件之间的交互在系统的成功运行中发挥着重要作用。研究人员已经确定了两种类型的交互失败:受硬件故障(硬件驱动软件故障)影响的软件故障和受软件故障影响的硬件故障(软件驱动的硬件故障)。该领域的现有研究尚未考虑整个交互失败的频谱或限制其工作以仅仅是故障分析而不是可靠性/可用性建模。在本文中,我们提出了一个统一的模型,以预测早期设计阶段的硬件软件组合系统的最坏情况可实现的可靠性/可用性。所提出的模型从需求规范文档中识别系统功能。然后,这些功能映射到相应的概念设计组件。随后,模拟功能设计,用于针对组件的不同操作模式(故障/工作)随机生成的输入数据集。我们还通过组件操作模式模拟系统状态转换。最后,从仿真结果预测可靠性和可用性。在这种情况下,我们解决了四个重要方面:i)提出基于概念设计的早期可靠性/可用性预测模型,ii)除了单独的硬件 - 软件组件故障之外,所提出的模型解决了不同的交互失败,如硬件驱动的软件和软件驱动的硬件故障,iii)通过案例研究实现所提出的模型,并且IV)通过使用所提出的方法与已建立的方法进行比较所获得的可靠性/可用性值来验证模型。

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