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Reliability model of a wind tunnel balance system

机译:风洞平衡系统的可靠性模型

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摘要

Balance is one of the most significant and commonly used measurement instruments in wind tunnels. It is thus critical that this instrument is fault-tolerant and reliable. To help in the design of dependable balance systems, one must model and analyze the system from this perspective. We achieved this by considering the structure of a typical balance system and the types of errors it may encounter during operation. We estimated the failure rates of the components of the balance system, such as the balance structure, strain gages, and power supply, using manufacturer technical documents and fatigue tests, and identified the effect of each component on the reliability of the balance system. On this basis, we presented a Markov model for the reliability of the balance system, assuming that the data acquisition of a typical flying model should be complete in less than 15 min in order for the balance system to be considered reliable. Simulation of the proposed model with SHARPE software showed that if we reduced the time of the experiments, from 30 min to 15 min, the reliability of the balance system improved by about 30%. In addition, the cost of the experiments in the wind tunnel was reduced by 20%-30%.
机译:天平是风洞中最重要,最常用的测量工具之一。因此,至关重要的是该仪器必须具有容错性和可靠性。为了帮助设计可靠的平衡系统,必须从这一角度对系统进行建模和分析。我们通过考虑典型平衡系统的结构以及操作过程中可能遇到的错误类型来实现这一目标。我们使用制造商的技术文档和疲劳测试估算了天平系统各组件的故障率,例如天平结构,应变计和电源,并确定了每个组件对天平系统可靠性的影响。在此基础上,我们提出了一个用于平衡系统可靠性的马尔可夫模型,假设一个典型的飞行模型的数据采集应在15分钟内完成,以使平衡系统被认为是可靠的。使用SHARPE软件对提出的模型进行的仿真表明,如果我们将实验时间从30分钟减少到15分钟,则平衡系统的可靠性提高了约30%。此外,在风洞中进行实验的成本降低了20%-30%。

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