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Main Authors: Rossini, Luca, Romiti, Edoardo, Laurenzi, Arturo, Ruscelli, Francesco, Ruzzon, Marco, Covizzi, Luca, Baccelliere, Lorenzo, Carrozzo, Stefano, Terzer, Michael, Magri, Marco, Morganti, Carlo, Lei, Maolin, Bertoni, Liana, Vedelago, Diego, Burchielli, Corrado, Cordasco, Stefano, Muratore, Luca, Giusti, Andrea, Tsagarakis, Nikos
Format: Preprint
Published: 2025
Subjects:
Online Access:https://arxiv.org/abs/2504.04998
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author Rossini, Luca
Romiti, Edoardo
Laurenzi, Arturo
Ruscelli, Francesco
Ruzzon, Marco
Covizzi, Luca
Baccelliere, Lorenzo
Carrozzo, Stefano
Terzer, Michael
Magri, Marco
Morganti, Carlo
Lei, Maolin
Bertoni, Liana
Vedelago, Diego
Burchielli, Corrado
Cordasco, Stefano
Muratore, Luca
Giusti, Andrea
Tsagarakis, Nikos
author_facet Rossini, Luca
Romiti, Edoardo
Laurenzi, Arturo
Ruscelli, Francesco
Ruzzon, Marco
Covizzi, Luca
Baccelliere, Lorenzo
Carrozzo, Stefano
Terzer, Michael
Magri, Marco
Morganti, Carlo
Lei, Maolin
Bertoni, Liana
Vedelago, Diego
Burchielli, Corrado
Cordasco, Stefano
Muratore, Luca
Giusti, Andrea
Tsagarakis, Nikos
contents This paper presents CONCERT, a fully reconfigurable modular collaborative robot (cobot) for multiple on-site operations in a construction site. CONCERT has been designed to support human activities in construction sites by leveraging two main characteristics: high-power density motors and modularity. In this way, the robot is able to perform a wide range of highly demanding tasks by acting as a co-worker of the human operator or by autonomously executing them following user instructions. Most of its versatility comes from the possibility of rapidly changing its kinematic structure by adding or removing passive or active modules. In this way, the robot can be set up in a vast set of morphologies, consequently changing its workspace and capabilities depending on the task to be executed. In the same way, distal end-effectors can be replaced for the execution of different operations. This paper also includes a full description of the software pipeline employed to automatically discover and deploy the robot morphology. Specifically, depending on the modules installed, the robot updates the kinematic, dynamic, and geometric parameters, taking into account the information embedded in each module. In this way, we demonstrate how the robot can be fully reassembled and made operational in less than ten minutes. We validated the CONCERT robot across different use cases, including drilling, sanding, plastering, and collaborative transportation with obstacle avoidance, all performed in a real construction site scenario. We demonstrated the robot's adaptivity and performance in multiple scenarios characterized by different requirements in terms of power and workspace. CONCERT has been designed and built by the Humanoid and Human-Centered Mechatronics Laboratory (HHCM) at the Istituto Italiano di Tecnologia in the context of the European Project Horizon 2020 CONCERT.
format Preprint
id arxiv_https___arxiv_org_abs_2504_04998
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle CONCERT: a Modular Reconfigurable Robot for Construction
Rossini, Luca
Romiti, Edoardo
Laurenzi, Arturo
Ruscelli, Francesco
Ruzzon, Marco
Covizzi, Luca
Baccelliere, Lorenzo
Carrozzo, Stefano
Terzer, Michael
Magri, Marco
Morganti, Carlo
Lei, Maolin
Bertoni, Liana
Vedelago, Diego
Burchielli, Corrado
Cordasco, Stefano
Muratore, Luca
Giusti, Andrea
Tsagarakis, Nikos
Robotics
This paper presents CONCERT, a fully reconfigurable modular collaborative robot (cobot) for multiple on-site operations in a construction site. CONCERT has been designed to support human activities in construction sites by leveraging two main characteristics: high-power density motors and modularity. In this way, the robot is able to perform a wide range of highly demanding tasks by acting as a co-worker of the human operator or by autonomously executing them following user instructions. Most of its versatility comes from the possibility of rapidly changing its kinematic structure by adding or removing passive or active modules. In this way, the robot can be set up in a vast set of morphologies, consequently changing its workspace and capabilities depending on the task to be executed. In the same way, distal end-effectors can be replaced for the execution of different operations. This paper also includes a full description of the software pipeline employed to automatically discover and deploy the robot morphology. Specifically, depending on the modules installed, the robot updates the kinematic, dynamic, and geometric parameters, taking into account the information embedded in each module. In this way, we demonstrate how the robot can be fully reassembled and made operational in less than ten minutes. We validated the CONCERT robot across different use cases, including drilling, sanding, plastering, and collaborative transportation with obstacle avoidance, all performed in a real construction site scenario. We demonstrated the robot's adaptivity and performance in multiple scenarios characterized by different requirements in terms of power and workspace. CONCERT has been designed and built by the Humanoid and Human-Centered Mechatronics Laboratory (HHCM) at the Istituto Italiano di Tecnologia in the context of the European Project Horizon 2020 CONCERT.
title CONCERT: a Modular Reconfigurable Robot for Construction
topic Robotics
url https://arxiv.org/abs/2504.04998