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Manolo Garabini

31 accepted papers

2026

Harnessing Robotics for EU Forest Habitats Monitoring

ICRA 2026poster

This paper presents a novel approach to forest habitat monitoring using robotics and advanced data analysis techniques. We introduce a quadrupedal robot with LiDAR and onboard cameras to collect detailed data about forest structure and composition. The data is then processed using a combination of d…

Cited by 0Scholar
2025

Managing Conflicting Tasks in Heterogeneous Multi-Robot Systems Through Hierarchical Optimization

RA-L 2025

The robotics research community has explored several model-based techniques for multi-robot and multi-task control. Through constrained optimization, robot-specific characteristics can be taken into account when controlling robots and accomplishing tasks. However, in scenarios with multiple conflict

Cited by 0SourceScholar
2025

Underactuated Dexterous Robotic Grasping With Reconfigurable Passive Joints

RA-L 2025

We introduce a novel reconfigurable passive joint (RP-joint), which has been implemented and tested on an underactuated three-finger robotic gripper. RP-joint has no actuation, but instead it is lightweight and compact. It can be easily reconfigured by applying external forces and locked to perform

Cited by 2SourceScholar
2024

Accurate power consumption estimation method makes walking robots energy efficient and quiet

IROS 2024

Power consumption is a frequently over-looked aspect in robotics, especially in the context of legged robots. Nevertheless, improving the efficiency of walking robots is crucial to overcome the current limitations in runtime. This work proposes a novel method for precisely estimating actuator power

Cited by 4SourceScholar
2023

A Provably Stable Iterative Learning Controller for Continuum Soft Robots

RA-L 2023

Fully exploiting soft robots' capabilities requires devising strategies that can accurately control their movements with the limited amount of control sources available. This task is challenging for reasons including the hard-to-model dynamics, the system's underactuation, and the need of using a pr

Cited by 14SourceScholar
2022

High-Level Planning for Object Manipulation With Multi Heterogeneous Robots in Shared Environments

RA-L 2022

Multi-robot systems are becoming increasingly popular in warehouses and factories, since they potentially enable the development of more versatile and robust systems than single robots. Multiple robots allow performing complex tasks with greater efficiency. However, this leads to increased complexit

Cited by 7SourceScholar
2022

Planning Natural Locomotion for Articulated Soft Quadrupeds

ICRA 2022poster

Embedding elastic elements into legged robots through mechanical design enables highly efficient oscillating patterns that resemble natural gaits. However, current trajectory planning techniques miss the opportunity of taking advantage of these natural motions. This work proposes a locomotion planni…

Cited by 10SourceScholar
2022

Swing-Up of Underactuated Compliant Arms Via Iterative Learning Control

RA-L 2022

The swing-up is a classical problem of control theory that has already been widely studied in the literature. Despite that, swinging up an underactuated compliant arm considerably increases the problem complexity. Indeed, in addition to the problem of underactuation, compliant systems usually presen

Cited by 14SourceScholar
2021

Fast and Safe Trajectory Planning: Solving the Cobot Performance/Safety Trade-Off in Human-Robot Shared Environments

RA-L 2021

The rise of collaborative robotics has offered new opportunities for integrating automation into the factories, allowing robots and humans to work side-by-side. However, this close physical coexistence inevitably brings new constraints for ensuring safe human-robot cooperation. The current paramount

Cited by 66SourceScholar
2021

Robust Footstep Planning and LQR Control for Dynamic Quadrupedal Locomotion

RA-L 2021

In this letter, we aim to improve the robustness of dynamic quadrupedal locomotion through two aspects: 1) fast model predictive foothold planning, and 2) applying LQR to projected inverse dynamic control for robust motion tracking. In our proposed planning and control framework, foothold plans are

Cited by 35SourceScholar
2020

An Integrated Dynamic Fall Protection and Recovery System for Two-Wheeled Humanoids

RA-L 2020

Robots face the eventuality of falling. Unplanned events, external disturbances and technical failures may lead a robot to a condition where even an effective dynamic stabilization is not sufficient to maintain the equilibrium. Therefore, it is essential to equip robotic platforms with both active a

Cited by 7SourceScholar
2020

Benchmarking Hand and Grasp Resilience to Dynamic Loads

RA-L 2020

In this work, we investigate the behavior of artificial hands under impulsive load conditions. Resilience to impacts has been seldom considered in grasp and manipulation literature and benchmarks, although it is one of the most relevant issues in a number of applications involving physical interacti

Cited by 13SourceScholar
2020

CNN-based Foothold Selection for Mechanically Adaptive Soft Foot

IROS 2020poster

In this paper, we consider a problem of foothold selection for the quadrupedal robots equipped with compliant adaptive feet. Starting from a model of the foot we compute the quality of the potential footholds considering also kinematic constraints and collisions during evaluation. Since terrain asse…

Cited by 5SourceScholar
2020

Exploiting Adaptability in Soft Feet for Sensing Contact Forces

RA-L 2020

The large majority of legged robots currently employ ball-feet or flat-feet. More recently soft feet have been introduced, to improve walking performance on uneven grounds. Nevertheless, their novel adaptability requires sensor systems beyond traditional Force/Torque sensors to estimate the distribu

Cited by 5SourceScholar
2020

Grasp It Like a Pro: Grasp of Unknown Objects With Robotic Hands Based on Skilled Human Expertise

RA-L 2020

This work proposes a method to grasp unknown objects with robotic hands based on demonstrations by a skilled human operator. Not only are humans efficacious at grasping with their own hands but are also capable of grasping objects using robotic hands. Therefore, we consider how the grasping skills o

Cited by 39SourceScholar
2020

Time Generalization of Trajectories Learned on Articulated Soft Robots

RA-L 2020

This letter proposes a framework which is able to generate a sequence of three-dimensional human dance poses for a given music. The proposed framework consists of three components: a music feature encoder, a pose generator, and a music genre classifier. We focus on integrating these components for g

Cited by 48SourceScholar
2020

Time-Optimal Trajectory Planning for Flexible Joint Robots

RA-L 2020

In this letter, a new approach is proposed to optimally plan the motion along a parametrized path for flexible joint robots, i.e., robots whose structure is purposefully provided with compliant elements. State-of-the-art methods efficiently solve the problem in case of torque-controlled rigid robots

Cited by 26SourceScholar
2020

Trajectory Tracking of a One-Link Flexible Arm via Iterative Learning Control

IROS 2020poster

Trajectory tracking of flexible link robots is a classical control problem. Historically, the link elasticity was considered as something to be removed. Hence, the control performance was guaranteed by adopting high-gain feedback loops and, possibly, a dynamic compensation with the result to stiffen…

Cited by 10SourceScholar
2019

A Compact Soft Articulated Parallel Wrist for Grasping in Narrow Spaces

RA-L 2019

The increasing presence of high density logistic warehouses demands the deployment of fast and flexible robotic solutions. One of the open challenges toward this objective is manipulation in narrow settings. This work addresses such a problem from a design perspective. By observing human arm dexteri

Cited by 23SourceScholar
2019

Benchmarking Resilience of Artificial Hands

ICRA 2019

The deployment of robotics in real-world scenarios, which may involve harsh and irregular physical interactions with the environment, such as those when robots operating in a disaster scenario, or the interactions that prosthetic devices may experience, demands hardware, which is physically resilien

Cited by 6SourceScholar
2019

Dynamic Whole-Body Control of Unstable Wheeled Humanoid Robots

RA-L 2019

Control of two-wheeled humanoid robots poses several challenges due to the unstable dynamics of their mobile base and the coupling between the upper and lower body dynamics. The problem is often faced in the literature with methods based on the linearized or simplified models that fail in exploiting

Cited by 48SourceScholar
2019

Dynamic morphological computation through damping design of soft material robots: application to under-actuated grippers

ICRA 2019poster

This article presents the design of soft material robots with tunable damping properties. This study derives from the investigation of an under-actuated dynamic approach involving multi-chamber pneumatic systems. The co-design of the mechanical parameters (stiffness and damping) of the system along…

Cited by 8SourceScholar
2019

Novel Lockable and Stackable Compliant Actuation Unit for Modular +SPEA Actuators

RA-L 2019

On compliant robotic systems, modularity is recently adopted for the ease of up- and downscaling and the possibility to downgrade the costs, by moving towards the combination of standard units instead of custom designs. However, modularity on the actuator level itself lacks more thorough evaluation.

Cited by 3SourceScholar
2019

Online Optimal Impedance Planning for Legged Robots

IROS 2019poster

Real world applications require robots to operate in unstructured environments. This kind of scenarios may lead to unexpected environmental contacts or undesired interactions, which may harm people or impair the robot. Adjusting the behavior of the system through impedance control techniques is an e…

Cited by 31SourceScholar
2019

Stiffness Bounds for Resilient and Stable Physical Interaction of Articulated Soft Robots

RA-L 2019

It is widely recognized that impedance modulation is a key aspect in applications in which robots significantly interact with the environment or humans. Either active impedance controllers or actuators with passive variable impedance can be exploited to modulate the impedance. However, methods capab

Cited by 5SourceScholar
2019

Towards an Autonomous Unwrapping System for Intralogistics

RA-L 2019

Warehouse logistics is a rapidly growing market for robots. However, one key procedure that has not received much attention is the unwrapping of pallets to prepare them for objects picking. In fact, to prevent the goods from falling and to protect them, pallets are normally wrapped in plastic when t

Cited by 5SourceScholar
2018

A Novel Approach to Under-Actuated Control of Fluidic Systems

ICRA 2018poster

Thanks to the growing interest in soft robotics, hydropneumatics and inflatable system dynamics are attracting renewed attention from the scientific community. Typical fluidic systems are composed of several chambers and require a complex and bulky network of active components for their control. Thi…

Cited by 4SourceScholar
2018

Efficient Walking Gait Generation via Principal Component Representation of Optimal Trajectories: Application to a Planar Biped Robot With Elastic Joints

RA-L 2018

Recently, the method of choice to exploit robot dynamics for efficient walking is numerical optimization (NO). The main drawback in NO is the computational complexity, which strongly affects the time demand of the solution. Several strategies can be used to make the optimization more treatable and t

Cited by 22SourceScholar
2016

SoftHand Pro-D: Matching dynamic content of natural user commands with hand embodiment for enhanced prosthesis control

ICRA 2016

State of the art of hand prosthetics is divided between simple and reliable gripper-like systems and sophisticate hi-tech poly-articular hands which tend to be complex both in their design and for the patient to operate. In this paper, we introduce the idea of decoding different movement intentions

Cited by 28SourceScholar
2016

WALK-MAN humanoid lower body design optimization for enhanced physical performance

ICRA 2016

The deployment of robots to assist in environments hostile for humans during emergency scenarios require robots to demonstrate enhanced physical performance, that includes adequate power, adaptability and robustness to physical interactions and efficient operation. This work presents the design and

Cited by 69SourceScholar