Accurate and affordable cobot calibration without external measurement devices

Journal Article (2026)
Author(s)

Giovanni Franzese (Technology Innovation Institute (TII))

Max Spahn (ABB Robotics)

Jens Kober (University of Stuttgart)

Javier Alonso-Mora (TU Delft - Mechanical Engineering)

Cosimo Della Santina (TU Delft - Mechanical Engineering)

Research Group
Learning & Autonomous Control
DOI related publication
https://doi.org/10.1038/s44172-026-00633-4 Final published version
More Info
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Publication Year
2026
Language
English
Research Group
Learning & Autonomous Control
Journal title
Communications Engineering
Issue number
1
Volume number
5
Article number
138
Page Views
74
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Abstract

To reliably perform everyday tasks, collaborative robots must be accurate, not merely repeatable. Unfortunately, precise kinematic calibration often relies on tools that are more expensive than the robots themselves. We address this limitation by proposing a low-cost and effective calibration method aimed at democratizing cobot calibration. Our minimalist approach uses a single 3D-printable two-socket spherical-joint tool to kinematically constrain the robot end effector during data collection. An optimization routine updates the nominal kinematic model to ensure consistent socket predictions while preserving their mean distance. We validate the method on Franka, KUKA, and Kinova cobots, consistently reducing mean absolute errors, for example, from approximately 10 mm to 0.2 mm on Franka robots. To demonstrate practical impact, we further evaluate the calibrated model on a Franka robot in a peg-in-the-hole task with 0.4 mm tolerance and in a repeated drawing task using Cartesian control and learning from demonstration. Both tasks fail without calibration and consistently succeed with the calibrated model. The proposed method enables affordable and practical cobot calibration, providing a foundation for accurate manipulation tasks.