Despite the recent advancements in the field of wearable robotics, powered lower limb exoskeletons remain a technology strongly restricted to research or clinical settings. Their uptake as a device to assist mobility in the everyday life is still a challenge due to their high-cost and limited adaptability to unconstrained environments. To overcome these limitations, we propose an open-hardware and open-source platform specifically designed for boosting the research on intelligent exoskeletons (InteLLExo). The proposed prototype adopts design solutions based on low-cost materials, standardized components and simple construction aimed at simplifying the replicability of the device and increase its accessibility. In addition, the control architecture of the exoskeleton is developed within the Robot Operating System (ROS) to facilitate the integration of the device with artificial intelligence and neurorobotic techniques. Overall, InteLLExo aims at combining accessible technologies with robotic intelligence with the purpose of accelerating the research on intelligent exoskeletons and their adoption in everyday life.

InteLLExo: An Open Framework for Boosting the Development of Intelligent Exoskeletons

Bettella, Francesco;Tortora, Stefano
;
Trombin, Edoardo;Alberti, Luigi;Menegatti, Emanuele;Petrone, Nicola;Del Felice, Alessandra
2025

Abstract

Despite the recent advancements in the field of wearable robotics, powered lower limb exoskeletons remain a technology strongly restricted to research or clinical settings. Their uptake as a device to assist mobility in the everyday life is still a challenge due to their high-cost and limited adaptability to unconstrained environments. To overcome these limitations, we propose an open-hardware and open-source platform specifically designed for boosting the research on intelligent exoskeletons (InteLLExo). The proposed prototype adopts design solutions based on low-cost materials, standardized components and simple construction aimed at simplifying the replicability of the device and increase its accessibility. In addition, the control architecture of the exoskeleton is developed within the Robot Operating System (ROS) to facilitate the integration of the device with artificial intelligence and neurorobotic techniques. Overall, InteLLExo aims at combining accessible technologies with robotic intelligence with the purpose of accelerating the research on intelligent exoskeletons and their adoption in everyday life.
2025
Mechanisms and Machine Science
3rd International Workshop IFToMM for Sustainable Development Goals, I4SDG 2025
9783031911781
9783031911798
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11577/3566730
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