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Analyzing Reliability in Hybrid Compute Units

机译:分析混合计算单元中的可靠性

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Modern development of computing systems caters the collaboration of human-based resources together with machine-based resources as active compute units. Those units can be dynamically provisioned on-demand for solving complex tasks, such as observed in collaborative applications, crowd sourced applications, and human task workflows. Such collaborations involve very diverse compute units, which have different capabilities and reliability. While the reliability analysis for machine-based compute units has been widely developed, the reliability analysis for the hybrid human-machine collaborations has not been extensively studied. In this paper we present models and a framework for analyzing the reliability of hybrid compute units (HCU), which represent on-demand collectives of humans collaboration supported by machines (hardware and software units) for performing tasks. We present the implementation of our models and study the reliability of HCUs in a simulated system for infrastructure maintenance scenarios. Our evaluation shows that the proposed framework is effective for measuring the reliability of the collaboration collectives, and beneficial to obtain insights for improvements.
机译:计算系统的现代发展满足了基于人力资源与基于机器的资源作为活动计算单元的协作。可以按需动态提供这些单元,以解决复杂的任务,例如在协作应用程序,众包应用程序和人工任务工作流中观察到的。这样的合作涉及非常不同的计算单元,它们具有不同的功能和可靠性。虽然基于机器的计算单元的可靠性分析已经得到了广泛的发展,但是混合人机协作的可靠性分析尚未得到广泛研究。在本文中,我们提出了用于分析混合计算单元(HCU)可靠性的模型和框架,HCU代表了由执行任务的机器(硬件和软件单元)支持的按需集体协作。我们介绍了模型的实现,并在用于基础结构维护方案的模拟系统中研究了HCU的可靠性。我们的评估表明,所提出的框架对于衡量协作集体的可靠性是有效的,并且有助于获得改进见解。

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