4.2 Article

Stretchable optical fibre sensor for soft surgical robot shape reconstruction

期刊

OPTICA APPLICATA
卷 51, 期 4, 页码 589-604

出版社

WROCLAW UNIV SCIENCE TECHNOLOGY
DOI: 10.37190/oa210410

关键词

soft robotics; minimally invasive surgery; shape measurement; stretchable structure; optical fibre

类别

资金

  1. National Natural Science Foundation of China [61903041]
  2. Beijing Natural Science Foundation of China [7202017, 4204101]
  3. Research Project of Beijing Municipal Natural Science Foundation & Beijing Education Committee [KZ201911232044, KM201911232005]
  4. National Key Research and Development Project [2020YFA0711200]
  5. Beijing Nova Program of Science and Technology [Z191100001119052]

向作者/读者索取更多资源

Soft robotics has advantages in minimally invasive surgery, but soft robot shape sensing remains a challenge. This study proposes a helically embedded stretchable FBG sensor for shape sensing, showing feasibility and effectiveness in measuring soft robot shapes.
Soft robotics presents several advantages in the field of minimally invasive surgery. However, existing methods have not fully addressed problems related to soft robot shape sensing due to the complex motion of soft robots and the stretchable nature of the soft materials employed. This study demonstrates the shape sensing of a soft robot with a helically embedded stretchable fibre Bragg grating (FBG)-based optical fibre sensor. Unlike straight FBG embedding configurations, this unique helical configuration prevents sensor dislocation, supports material stretchability, and facilitates shape detection for various soft-robot movements. The proposed soft-robot design principle and FBG sensor are analysed and their fabrication process, which includes an FBG-written optical fibre sensor, is described. Bending experiments are conducted with the soft robot, the wavelengths of FBG sensors at different bending and telescopic movement states are obtained, and the soft-robot shape is reconstructed. Experimental results demonstrate that the maximum error between FBG sensing and the actual bending state is less than 2.5%, validating the feasibility and effectiveness of the proposed helical stretchable FBG sensing method for the shape measurement of soft robots. These results indicate the potential and applicability of this shape-sensing approach in biomedical research.

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