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Improved CST Method for Shape Perception of Flexible Variable-Camber Wings

  • Beijing Institute of Technology

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

The shape perception and parametric description are prerequisites for the optimization and control of flexible camber-morphing wing surfaces, while traditional Class function/Shape function Transformation (CST) methods are difficult to meet the demand for accurate description of large-scale trailing-edge camber variation. To address this issue, this paper conducts a study on shape perception and high-precision parametric description for wings with fixed leading edge and large trailing-edge camber deformation. A three-segment variable-camber morphing wing configuration is proposed, which adopts concave hexagonal cells combined with sliding skin. And, a segmented CST difference fitting method with C1 continuity constraint is proposed to achieve low-dimensional and high-precision description of complex wing surfaces. Furthermore, a distributed sensing system composed of strain sensor arrays, laser sensor arrays, IMU, and linear displacement sensor is established to achieve shape perception under both static and dynamic wing conditions. Experimental results show that compared with the conventional CST method, the accuracy of the proposed parametric description method has been improved by one order of magnitude, and its representation of large trailing-edge deformation variable-camber wings satisfies the typical wind-tunnel tolerance. The shape sensing system effectively validates the feasibility of real-time application of the proposed method.

Original languageEnglish
Title of host publication2026 IEEE 20th International Conference on Control and Automation, ICCA 2026
PublisherIEEE Computer Society
Pages2048-2055
Number of pages8
ISBN (Electronic)9798331548537
DOIs
Publication statusPublished - 2026
Externally publishedYes
Event20th IEEE International Conference on Control and Automation, ICCA 2026 - Almaty, Kazakhstan
Duration: 16 Jun 202619 Jun 2026

Publication series

NameIEEE International Conference on Control and Automation, ICCA
ISSN (Print)1948-3449
ISSN (Electronic)1948-3457

Conference

Conference20th IEEE International Conference on Control and Automation, ICCA 2026
Country/TerritoryKazakhstan
CityAlmaty
Period16/06/2619/06/26

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