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Francesco Ruscelli

8 accepted papers

2026

RL-Augmented MPC for Non-Gaited Legged and Hybrid Locomotion

RA-L 2026

We propose a contact-explicit hierarchical architecture coupling Reinforcement Learning (RL) and Model Predictive Control (MPC), where a high-level RL agent provides gait and navigation commands to a low-level locomotion MPC. This off loads the combinatorial burden of contact timing from the MPC by

Cited by 0SourcecodeScholar
2024

HYPERmotion: Learning Hybrid Behavior Planning for Autonomous Loco-manipulation

CoRL 2024poster

Enabling robots to autonomously perform hybrid motions in diverse environments can be beneficial for long-horizon tasks such as material handling, household chores, and work assistance. This requires extensive exploitation of intrinsic motion capabilities, extraction of affordances from rich environ…

Cited by 6SourcecodeScholar
2023

Design and Validation of a Multi-Arm Relocatable Manipulator for Space Applications

ICRA 2023poster

This work presents the computational design and validation of the Multi-Arm Relocatable Manipulator (MARM), a three-limb robot for space applications, with particular reference to the MIRROR (i.e., the Multi-arm Installation Robot for Readying ORUs and Reflectors) use-case scenario as proposed by th…

Cited by 3SourceScholar
2020

A Multi-Contact Motion Planning and Control Strategy for Physical Interaction Tasks Using a Humanoid Robot

IROS 2020poster

This paper presents a framework providing a full pipeline to execute a complex physical interaction behaviour of a humanoid bipedal robot, both from a theoretical and a practical standpoint. Building from a multi-contact control architecture that combines contact planning and reactive force distribu…

Cited by 15SourceScholar
2020

Multi-Contact Heavy Object Pushing With a Centaur-Type Humanoid Robot: Planning and Control for a Real Demonstrator

RA-L 2020

Performing a demanding manipulation task with a multi-legged loco-manipulation platform may require the exploitation of multiple external contacts with different environment surfaces for counteracting the manipulation forces. This is the case of the pushing task of a heavy object, where the grip for

Cited by 44SourceScholar
2019

Synchronizing Virtual Constraints and Preview Controller: a Walking Pattern Generator for the Humanoid Robot COMAN+

IROS 2019poster

In this paper we propose a novel hybrid walking pattern generator which combines results from the virtual constraints and the preview control theories for bipedal locomotion. This choice is motivated by findings in biomechanics that show how the dynamic motion of the human walk is mainly generated b…

Cited by 2SourceScholar
2018

A Fail-Safe Semi-Centralized Impedance Controller: Validation on a Parallel Kinematics Ankle

IROS 2018poster

This paper proposes the implementation of an impedance controller on the ankle level of COMAN+, a robot with parallel kinematics ankles actuated by a dual four-bar mechanism. The main contribution of the work is a realization of said control scheme that grants a less abrupt and safer robot response…

Cited by 12SourceScholar
2018

Proprioceptive-Inertial Autonomous Locomotion for Articulated Robots

ICRA 2018poster

Inspired by the ability of animals to rely on proprioception and vestibular feedback to adapt their gait, we propose a modular framework for autonomous locomotion that relies on force sensing and inertial information. A first controller exploits anti-compliance, a new application of positive force f…

Cited by 6SourceScholar