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Contact Volumetric Mesh Simulation of GelStereo Visuotactile Sensors

Shaowei Cui, Chaofan Zhang, Zhihao Shao, Chengju Dong, Yu Wang, Shuo Wang, Yuan Tian

Year
2023
Citations
2

Abstract

Visuotactile sensing simulation will significantly accelerate progress in learning robotic dexterous manipulation skills, but remains a challenging problem. Unlike previous studies that focused on optical path simulation, we focuses on high-precision, high-fidelity simulation of contact deformation using GelStereo sensing in this paper. We propose a finite element (FEM)-based volumetric mesh simulation model for the GelStereo sensors. Specifically, we perform calibration contact experiments to obtain the finite element parameters of the elastomer, and a large number of simulated contact experiments with real contact label verity the effectiveness of the proposed simulation model. This study is a preliminary exploration of the simulation of GelStereo-type sensors, which has positive significance for the simulation modeling of visuotactile sensors with deformation as the core tactile feature.

Keywords

Finite element methodComputer scienceModeling and simulationFeature (linguistics)Deformation (meteorology)Artificial intelligenceSimulationMaterials scienceEngineeringStructural engineering

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