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Characterization of a fiber-optic pressure sensor in a shock tube system for dynamic calibrations

机译:冲击管系统中用于动态校准的光纤压力传感器的特性

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摘要

Measurements of mechanical quantities such as pressure often take place under dynamic conditions, yet no traceable standards for the primary dynamic calibration of pressure sensors currently exist. In theory, shock tubes can provide a close to perfect step-function ideal for the calibration of pressure transducers. In this paper we investigate a system consisting of a shock tube and an ultra-fast fiber-optical sensor that is designed to be a future primary system for dynamic pressure calibrations. For reference, the fiber-optical sensor is compared to a piezoelectric sensor, and their corresponding frequency spectra are calculated. Furthermore, an investigation of the repeatability of the fiber-optical sensor, as well as a comparison with a second shock tube, is performed.
机译:机械量(例如压力)的测量通常是在动态条件下进行的,但目前尚无用于压力传感器的主要动态校准的可追溯标准。从理论上讲,减震管可提供接近完美的阶跃功能,非常适合压力传感器的校准。在本文中,我们研究了一个由减震管和超快光纤传感器组成的系统,该系统被设计为将来用于动态压力校准的主要系统。作为参考,将光纤传感器与压电传感器进行比较,并计算它们相应的频谱。此外,对光纤传感器的可重复性以及与第二冲击管的比较进行了研究。

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