학술논문

Embedded Optical Waveguide Sensors for Dynamic Behavior Monitoring in Twisted-Beam Structures
Document Type
Conference
Source
2024 IEEE 7th International Conference on Soft Robotics (RoboSoft) Soft Robotics (RoboSoft), 2024 IEEE 7th International Conference on. :139-144 Apr, 2024
Subject
Robotics and Control Systems
Optical fibers
Optical fiber sensors
Tracking
Dynamics
Robot vision systems
Soft robotics
Sensor systems
Language
ISSN
2769-4534
Abstract
In this work, we present two embedded soft optical waveguide sensors designed for realtime onboard configuration sensing in soft actuators for robotic locomotion. Extending the contributions of our collaborators who employed external camera systems to monitor the gaits of twisted-beam structures, we strategically integrate our OptiGap sensor system into these structures to monitor their dynamic behavior. The system is validated through machine learning models that correlate sensor data with camera-based motion tracking, achieving high accuracy in predicting forward or reverse gaits and validating its capability for realtime sensing. Our second sensor, consisting of a square cross-section fiber pre-twisted to 360 degrees, is designed to detect the chirality of reconfigurable twisted beams. Experimental results confirm the sensor's effectiveness in capturing variations in light transmittance corresponding to twist angle, serving as a reliable chirality sensor. The successful integration of these sensors not only improves the adaptability of soft robotic systems but also opens avenues for advanced control algorithms.