IROS 20250 citations

Stretchable and High-Precision Optical Tactile Sensor for Trajectory Tracking of Parallel Mechanisms

Yiding Nie, Dongliang Fan, Jiatai Huang, Chunyu Liu, Jian S. Dai

Abstract

Stretchable sensors indicate promising prospects for soft robotics, medical devices, and human-machine interactions due to the high compliance of soft materials. Discrete sensing strategies, including sensor arrays and distributed sensors, are broadly involved in tactile sensors across versatile applications. However, it remains a challenge to achieve high spatial resolution with self-decoupled capacity and insensitivity to other off-axis stimuli for stretchable tactile sensors. Herein, we develop a stretchable tactile sensor based on the proposed continuous spectral-filtering principle, allowing superhigh resolution for applied stimuli. This proposed sensor enables a high-linear spatial response (R<sup xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">2</sup> > 0.996) even during stretching and bending, and high continuous spatial (7 μm) and force (5 mN) resolutions with design scalability and interaction robustness to survive piercing and cutting. We further demonstrate the sensors' performance by integrating them into a planar parallel mechanism for precise trajectory tracking (rotational resolution: 0.02°) in real time.

BibTeX
@inproceedings{iros2025_stretchableandhi,
  title = {Stretchable and High-Precision Optical Tactile Sensor for Trajectory Tracking of Parallel Mechanisms},
  author = {Yiding Nie and Dongliang Fan and Jiatai Huang and Chunyu Liu and Jian S. Dai},
  booktitle = {IROS 2025},
  year = {2025}
}
Stretchable and High-Precision Optical Tactile Sensor for Trajectory Tracking of Parallel Mechanisms · IROS 2025