TY - GEN
T1 - Design and Simulation of an Inspection Robot for Realizing Its Digital Twin
AU - Pelagalli, Cristian
AU - Di Bona, Roberto
AU - Rea, Pierluigi
AU - Ottaviano, Erika
AU - Kciuk, Marek
AU - Kowalik, Zygmunt
N1 - Publisher Copyright:
© The Author(s), under exclusive license to Springer Nature Switzerland AG 2026.
PY - 2026
Y1 - 2026
N2 - Bomb disposal is one of the most dangerous tasks in the world, but detecting and removing unexploded ordnance is crucial to prevent harm to people. Every year, thousands of civilians, most of them children, lose their lives or limbs due to landmines or other explosive remnants of war. Current methods for landmine removal are often life-threatening, damage the soil, and are expensive. A vehicle for landmine clearance could save lives and reduce costs. The main idea of this work is to develop a remotely controlled mobile robot capable of detecting the presence of landmines underground using a metal detector or other sensors mounted on an end effector, which emits acoustic signals upon detection or detects the presence of the ordnance. Specifically, this work focuses on the robot’s actuation, sizing of the motors, and designing and realizing the motor control system and an interface that allows the robot to be controlled from a PC. In addition, suitable sensors such as LiDAR have been used and tested for further development towards automatic obstacle detection and autonomous navigation. The work represents the basis for developing a Digital Twin of the system for a LEAN automation.
AB - Bomb disposal is one of the most dangerous tasks in the world, but detecting and removing unexploded ordnance is crucial to prevent harm to people. Every year, thousands of civilians, most of them children, lose their lives or limbs due to landmines or other explosive remnants of war. Current methods for landmine removal are often life-threatening, damage the soil, and are expensive. A vehicle for landmine clearance could save lives and reduce costs. The main idea of this work is to develop a remotely controlled mobile robot capable of detecting the presence of landmines underground using a metal detector or other sensors mounted on an end effector, which emits acoustic signals upon detection or detects the presence of the ordnance. Specifically, this work focuses on the robot’s actuation, sizing of the motors, and designing and realizing the motor control system and an interface that allows the robot to be controlled from a PC. In addition, suitable sensors such as LiDAR have been used and tested for further development towards automatic obstacle detection and autonomous navigation. The work represents the basis for developing a Digital Twin of the system for a LEAN automation.
KW - Digital Twin
KW - Inspection Robot
KW - LEAN Automation
KW - Robotics
KW - Simulation
UR - https://www.scopus.com/pages/publications/105022698191
U2 - 10.1007/978-3-032-09806-1_22
DO - 10.1007/978-3-032-09806-1_22
M3 - Conference contribution
AN - SCOPUS:105022698191
SN - 9783032098054
T3 - Lecture Notes in Mechanical Engineering
SP - 279
EP - 289
BT - Advances in Lean Manufacturing, Volume 1 - LEAN in Action
A2 - Antosz, Katarzyna
A2 - Stadnicka, Dorota
A2 - Trojanowska, Justyna
A2 - Machado, Jose
PB - Springer Science and Business Media Deutschland GmbH
T2 - 11th European Lean Educator Conference, ELEC 2025
Y2 - 22 October 2025 through 24 October 2025
ER -