Embedded Fiber Optic Shape Sensing for Aeroelastic Wing Components, Phase I

As the aerospace industry continues to push for greater vehicle efficiency, performance, and longevity, properties of wing aeroelasticity and flight dynamics have become increasingly important. Both the study and the active control of wing dynamics require advanced sensing technology to inform the design process on the ground and provide feedback for aeroservoelastic systems in the sky.

Data and Resources

Field Value
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identifier TECHPORT_10405
issued 2013-02-01
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modified 2020-01-29
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metadata_created 2025-11-22T14:42:35.051979
metadata_modified 2025-11-22T14:42:35.051983
notes As the aerospace industry continues to push for greater vehicle efficiency, performance, and longevity, properties of wing aeroelasticity and flight dynamics have become increasingly important. Both the study and the active control of wing dynamics require advanced sensing technology to inform the design process on the ground and provide feedback for aeroservoelastic systems in the sky.
num_resources 4
num_tags 10
title Embedded Fiber Optic Shape Sensing for Aeroelastic Wing Components, Phase I