Extrusion Under Material Uncertainty with Pressure-Based Closed-Loop Feedback Control in Robotic Concrete Additive Manufacturing (2025-09)¶
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Journal Article - Automation in Construction, Vol. 180, No. 106494
Abstract
One of the main challenges in extrusion-based robotic concrete additive manufacturing process is material uncertainty under pressure which leads to geometric inaccuracies. Here, a real-time pressure-based closed-loop feedback control system is developed to address the geometric fidelity challenges that arise from the material uncertainty under extrusion. A robotic extrusion process is instrumented with a load sensor and assessed with and without activation of the pressure-based controller. The reliability and robustness of a pressure-based closed-loop control system is examined by introducing single- and double-perturbation of the extrusion and assessing the recovery of the geometry (width, height) of the extruded filaments to a baseline reference. The developed control system reacts to retrieve and maintain geometric fidelity among all experiments and repetitions, thereby highlighting the utility of pressure as a feedback parameter to handle material uncertainty that is common in extrusion-based robotic manufacturing process. Future directions include evaluating the control system in unseen conditions.
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0 Citations
BibTeX
@article{rabi_moin.2025.EUMUwPBCLFCiRCAM,
author = "Mahsa Rabiei and Mohamadreza Moini",
title = "Extrusion Under Material Uncertainty with Pressure-Based Closed-Loop Feedback Control in Robotic Concrete Additive Manufacturing",
doi = "10.1016/j.autcon.2025.106494",
year = "2025",
journal = "Automation in Construction",
volume = "180",
pages = "106494",
}
Formatted Citation
M. Rabiei and M. Moini, “Extrusion Under Material Uncertainty with Pressure-Based Closed-Loop Feedback Control in Robotic Concrete Additive Manufacturing”, Automation in Construction, vol. 180, p. 106494, 2025, doi: 10.1016/j.autcon.2025.106494.
Rabiei, Mahsa, and Mohamadreza Moini. “Extrusion Under Material Uncertainty with Pressure-Based Closed-Loop Feedback Control in Robotic Concrete Additive Manufacturing”. Automation in Construction 180 (2025): 106494. https://doi.org/10.1016/j.autcon.2025.106494.