Open Access Paper
21 November 2017 Vega interstage strain measurements: comparison between conventional strain gauges and fibre Bragg grating sensors
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Proceedings Volume 10567, International Conference on Space Optics — ICSO 2006; 105672E (2017) https://doi.org/10.1117/12.2308159
Event: International Conference on Space Optics 2006, 2006, Noordwijk, Netherlands
Abstract
Europe is developing a new generation launcher, called Vega, a small launcher with a capacity to place satellites into polar and low-Earth orbits, which are used for many scientific and Earth observation missions. Its first launch is scheduled for early 2008. Dutch Space is responsible for the development, qualification and manufacturing of the Vega Interstage 1/2. This all-aluminium conically shaped section is designed as a monocoque structure. This subsystem of Vega has undergone its first qualification tests of force loading combined with an extensive programme of measurements (forces, displacements and strains), at TNO in Delft. In parallel to conventional strain gauges Fibre Optic Sensors (FOS) in the form of Fibre Bragg Grating (FBG) sensor arrays, consisting of five strain sensors and one temperature sensor, have been installed on different locations of the interstage. Direct comparisons of the results with conventional sensors during load tests up to several hundred tons are therefore possible. A self-evident benefit of FBG sensors in an array application is that each sensing FBG can have a different Bragg wavelength to reflect. Thus, Wavelength Division Multiplexing (WDM) can conveniently be used to distinguish the different sensing FBG’s at the receiving side. First test results from load measurements performed on the Qualification Model (QM) of the Vega Interstage 1/2 are presented in this paper as well as an outlook to future integration of the FBG in this field.
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Lun Cheng and Berit Ahlers "Vega interstage strain measurements: comparison between conventional strain gauges and fibre Bragg grating sensors", Proc. SPIE 10567, International Conference on Space Optics — ICSO 2006, 105672E (21 November 2017); https://doi.org/10.1117/12.2308159
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KEYWORDS
Fiber Bragg gratings

Sensors

Modulation

Satellites

Temperature metrology

Aerospace engineering

Optical fibers

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