4.6 Article

Assessment of the Measurement Performance of the Multimodal Fibre Optic Shape Sensing Configuration for a Morphing Wing Section

期刊

SENSORS
卷 22, 期 6, 页码 -

出版社

MDPI
DOI: 10.3390/s22062210

关键词

Fibre Bragg Grating; strain measurement; optical interferometry; spectral sensing; shape sensing; structural health monitoring; morphing wing; experimental mechanics; multimodal sensing; optical fibre sensing

资金

  1. Delft University of Technology

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This paper analyses a developed multimodal shape sensing system aimed at shape sensing for a morphing aircraft wing section. The focus is on assessing measurement performance and analyzing errors in the system, using detailed calibration procedures and a multimodal sensing algorithm to measure deflection and shape accurately.
In this paper, with the final aim of shape sensing for a morphing aircraft wing section, a developed multimodal shape sensing system is analysed. We utilise the method of interrogating a morphing wing section based on the principles of both hybrid interferometry and Fibre Bragg Grating (FBG) spectral sensing described in our previous work. The focus of this work is to assess the measurement performance and analyse the errors in the shape sensing system. This includes an estimation of the bending and torsional deformations of an aluminium mock-up section due to static loading that imitates the behaviour of a morphing wing trailing edge. The analysis involves using a detailed calibration procedure and a multimodal sensing algorithm to measure the deflection and shape. The method described In this paper, uses a standard single core optical fibre and two grating pairs on both the top and bottom surfaces of the morphing section. A study on the fibre placement and recommendations for efficient monitoring is also included. The analysis yielded a maximum deflection sensing error of 0.7 mm for a 347 x 350 mm wing section.

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