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Mathematical modelling to support traceable dynamic calibration of pressure sensors

机译:数学建模可支持对压力传感器进行可追溯的动态校准

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This paper focuses on the mathematical modelling required to support the development of new primary standard systems for traceable calibration of dynamic pressure sensors. We address two fundamentally different approaches to realizing primary standards, specifically the shock tube method and the drop-weight method. Focusing on the shock tube method, the paper presents first results of system identification and discusses future experimental work that is required to improve the mathematical and statistical models. We use simulations to identify differences between the shock tube and drop-weight methods, to investigate sources of uncertainty in the system identification process and to assist experimentalists in designing the required measuring systems. We demonstrate the identification method on experimental results and draw conclusions.
机译:本文重点关注支持动态压力传感器可追溯校准的新主要标准系统开发所需的数学建模。我们讨论了实现基本标准的两种根本不同的方法,特别是冲击管法和落锤法。本文重点介绍了激波管方法,介绍了系统识别的初步结果,并讨论了改进数学和统计模型所需的未来实验工作。我们使用模拟来识别减震管和落锤法之间的差异,调查系统识别过程中不确定性的来源,并协助实验人员设计所需的测量系统。我们根据实验结果论证了鉴定方法并得出结论。

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