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Use of design of experiments and Monte Carlo method for instruments optimal design

机译:使用实验设计和蒙特卡洛方法进行仪器优化设计

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A common issue in the design of measurement instruments is the comparison between different solutions in terms of components of the measurement chain, data processing or even measurement principles; the predicted instrumental uncertainty is the driving parameter for such a comparison. While in many situations the linearization of the measuring model allows using the standard ISO GUM procedure, in complex cases it might be necessary to proceed with Monte Carlo simulations as per ISO GUM supplement 1. This paper describes a method that combines the factorial design of experiments (DOE) and the ISO GUM supplement 1 uncertainty evaluation method to guide the instrument designer in the instrument configuration optimization. The proposed approach allows estimating, in the design phase, the overall instrumental uncertainty for different configurations, the instrument sensitivity to the accuracy in the measurements of its inputs and the effects on systematic and random measurement errors deriving from the choice of all instrumental variables. The use of data populations selected with the DOE criteria allows recovering valuable parameters equivalent to the sensitivity factors of the GUM linearized approach. The data analysis allows separating the critical factors that must be accurately controlled from those only weakly affecting the measurement uncertainty. The method has been applied to a case study where the metrological performances of a system devoted to the measurement of the acoustic radiation emitted by a vibrating panel in a reverberant enclosure had to be assessed.
机译:测量仪器设计中的一个普遍问题是,在测量解决方案的组成,数据处理甚至测量原理方面,对不同解决方案进行比较。预测的仪器不确定性是进行这种比较的驱动参数。尽管在很多情况下,测量模型的线性化允许使用标准的ISO GUM程序,但在复杂情况下,可能有必要按照ISO GUM补充文件1进行Monte Carlo模拟。 (DOE)和ISO GUM补充1不确定性评估方法,以指导仪器设计人员进行仪器配置优化。所提出的方法允许在设计阶段估计不同配置的整体仪器不确定性,仪器对其输入的测量精度的敏感性以及对所有仪器变量的选择对系统和随机测量误差的影响。使用通过DOE标准选择的数据总体可以恢复与GUM线性化方法的敏感性因子等效的有价值的参数。数据分析可以将必须​​精确控制的关键因素与仅对测量不确定性产生微弱影响的那些因素分开。该方法已应用于案例研究,在该案例中,必须评估用于测量混响外壳中振动面板发出的声辐射的系统的计量性能。

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