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Estimating Deformed Surface Displacement From Contact Pressure Distribution

Hyoungkyun Kim, Seungmoon Choi, Wan Kyun Chung

Year
2019
Citations
2

Abstract

Displacement information is essential in many robotic applications involving contact, especially with viscoelastic objects. In this paper, we provide a novel displacement estimation method using contact pressure distribution. Our method can estimate displacement using only a typical tactile sensor, which can be shared by a force measurement. As a result, our method can reduce the number of required sensors for stiffness estimation, so it is suitable for stiffness-required applications with strict spatial constraints. Simulation and experimental results demonstrate the performance of our method.

Keywords

Displacement (psychology)StiffnessTactile sensorContact forceContact areaComputer sciencePressure sensorAcousticsSurface (topology)Control theory (sociology)

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