Oct 2026· IEEE Robotics and Automation Letters· Vol 11, pp. 12152-12159· 0 citations· 28 references
TL;DR
This study proposes a motion trajectory correction method for a robot based on iterative learning and force information to automate contact-based glue application tasks and demonstrates the effectiveness and its potential for use in contact-based coating tasks.
Abstract
This study proposes a motion trajectory correction method for a robot based on iterative learning and force information to automate contact-based glue application tasks. To apply glue using a sponge, force information is essential because a uniform coating requires subtle changes in the contact force at the fingertips. Most studies on the automation of coating tasks focus on noncontact processes such as spray painting that do not require force sensing at the end effector. By contrast, we aim to automate contact-based glue application tasks using a robot-teaching system that matches the forces produced by a human operator and robot system. In a similar system, force in the pressing direction of the sponge was successfully reproduced. However, force errors remained along the other axes. Hence, in our system, the target motion trajectory is also corrected to match the torques about the two axes orthogonal to the pressing direction, improving the accuracy of the robot's movements. Experimental results demonstrate the effectiveness of the proposed method and its potential for use in contact-based coating tasks. In addition to the force and torque evaluation, a water-droplet spreading task on color-changing paper is used as a task-level surrogate assessment; applying the correction improved the spreading uniformity relative to no compensation.
An adaptive scheme that estimates the kinematic relationship between a robot's joints and the task features it senses online, using only joint-angle sensing and a wrist-mounted force/torque sensor, with no exteroceptive measurement of the tool tip is developed.
Collaborative robots are increasingly deployed in industrial scenarios characterized by frequent product changeovers. As an intuitive programming method, kinesthetic teaching facilitates rapid robot deployment. However, users may overlook the configuration of the robot during kinesthetic teaching, leading to degradatio...
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A parallel motor-cable system installed around the robot workspace, cables with controllable tension connected to the robot end-effector can provide the desired external force without interfering with the movement of the surgical robot.
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Quantitative experiments showed that the proposed method generally outperformed the baselines in mass and CoM variations, particularly in terms of success rate, while maintaining robust performance across the evaluated conditions.
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In this work, we propose a haptic update control law that uses reaction torques to correct axial misalignment during robotic valve manipulation. Unlike vision-based estimates, which can be affected by calibration errors, occlusion, and uncertainty in the contact geometry, reaction torques arise directly from the physic...
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For blind or visually impaired (BVI), the acquisition of three-dimensional (3D) spatial relationships highly depends on touch, proprioception, and active movement experience. Existing training methods are mostly based on 2D tactile graphics or static models and therefore have difficulty providing continuous, controllab...
Da-Peng Chen, J. Lou, Zheng-Jie Ma et al.· IEEE transactions on neural...· 0 citations
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