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Lucia Pallottino

23 accepted papers

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
2024

Efficient Context-Aware Model Predictive Control for Human-Aware Navigation

RA-L 2024

With the goal of creating efficient human-aware robot navigation systems, we present a Context-aware Model Predictive Control (MPC) formulation designed specifically for dynamic and crowded environments. State-of-the-art approaches use mainly geometric information and predictions of human motion, th

Cited by 18SourceScholar
2022

Efficient 2D LIDAR-Based Map Updating For Long-Term Operations in Dynamic Environments

IROS 2022poster

Long-time operations of autonomous vehicles and mobile robots in logistics and service applications are still a challenge. To avoid a continuous re-mapping, the map can be updated to obtain a consistent representation of the current environment. In this paper, we propose a novel LIDAR-based occupanc…

Cited by 7SourceScholar
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

Information-Aware Lyapunov-Based MPC in a Feedback-Feedforward Control Strategy for Autonomous Robots

RA-L 2022

This letter proposes a feedback-feedforward control scheme that combines the benefits of an online active sensing control strategy (the feedforward control component) to maximize the information needed for correctly executing the desired task, with a Lyapunov-based control strategy (the feedback con

Cited by 10SourceScholar
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

Force-based Formation Control of Omnidirectional Ground Vehicles

IROS 2021poster

Formation control of multi-robot systems has been largely studied due to its wide application domain. Several methods in the literature rely on explicit communication among the robots, which in realistic scenarios may lead to reduced performance or even instability due to delays and packet loss or c…

Cited by 1SourceScholar
2021

Gramian-based optimal active sensing control under intermittent measurements

ICRA 2021poster

This paper proposes an online optimal perception-aware strategy meant to maximize the information collected along the trajectory via the available measurements while simultaneously minimizing the negative effects of actuation/process noise. Indeed, in several robotic applications, the actuation/proc…

Cited by 14SourceScholar
2021

Priority-Based Distributed Coordination for Heterogeneous Multi-Robot Systems With Realistic Assumptions

RA-L 2021

A standing challenge in current intralogistics is to reliably, effectively, yet safely coordinate large-scale, heterogeneous multi-robot fleets without posing constraints on the infrastructure or unrealistic assumptions on robots. A centralized approach, proposed by some of the authors in prior work

Cited by 9SourceScholar
2020

Compliance Control of a Cable-Suspended Aerial Manipulator using Hierarchical Control Framework

IROS 2020poster

Aerial robotic manipulation is an emergent trend that poses several challenges. To overcome some of these, the DLR cable-Suspended Aerial Manipulator (SAM) has been envisioned. SAM is composed of a fully actuated multi-rotor anchored to a main carrier through a cable and a KUKA LWR attached below th…

Cited by 10SourceScholar
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-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
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

Exact Task Execution in Highly Under-Actuated Soft Limbs: An Operational Space Based Approach

RA-L 2019

Recently, the development of soft robots is imposing a change of prospective in several aspects of design and control, moving the robotic field closer to the natural world. Soft robots, like many animals, are often built of continuously deformable elements, and are consequently characterized by a hi

Cited by 15SourceScholar
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
2019

Towards the Design of Robotic Drivers for Full-Scale Self-Driving Racing Cars

ICRA 2019poster

Autonomous vehicles are undergoing a rapid development thanks to advances in perception, planning and control methods and technologies achieved in the last two decades. Moreover, the lowering costs of sensors and computing platforms are attracting industrial entities, empowering the integration and…

Cited by 41SourceScholar
2018

Aerial Co-Manipulation With Cables: The Role of Internal Force for Equilibria, Stability, and Passivity

RA-L 2018

This letter considers the cooperative manipulation of a cable-suspended load with two generic aerial robots without the need of explicit communication. The role of the internal force for the asymptotic stability of the beam position-and-attitude equilibria is analyzed in depth. Using a nonlinear Lya

Cited by 93SourceScholar
2017

Noninteracting constrained motion planning and control for robot manipulators

ICRA 2017poster

In this paper we present a novel geometric approach to motion planning for constrained robot systems. This problem is notoriously hard, as classical sampling-based methods do not easily apply when motion is constrained in a zero-measure submanifold of the configuration space. Based on results on the…

Cited by 41SourceScholar