← Search

Alessandro Roncone

24 accepted papers

2026

CRED: Counterfactual Reasoning and Environment Design for Active Preference Learning

ICRA 2026poster

As a robot's operational environment and tasks to perform within it grow in complexity, the explicit specification and balancing of optimization objectives to achieve a preferred behavior profile moves increasingly farther out of reach. These systems benefit strongly by being able to align their beh…

2026

Design, Mapping, and Contact Anticipation with 3D-Printed Whole-Body Tactile and Proximity Sensors

ICRA 2026poster

Robots operating in dynamic and shared environments benefit from anticipating contact before it occurs. We present GenTact-Prox, a fully 3D-printed artificial skin that integrates tactile and proximity sensing for contact detection and anticipation. The artificial skin platform is modular in design,…

2026

Moving On, Even When You’re Broken: Fail-Active Trajectory Generation Via Diffusion Policies Conditioned on Embodiment and Task

ICRA 2026poster

Robot failure is detrimental and disruptive, often requiring human intervention to recover. Our vision is 'fail-active' operation, allowing robots to safely complete their tasks even when damaged. Focusing on 'actuation failures', we introduce DEFT, a diffusion-based trajectory generator conditioned…

Cited by 0Scholar
2026

ShelfAware: Real-Time Visual-Inertial Semantic Localization in Quasi-Static Environments With Low-Cost Sensors

RA-L 2026

Many indoor workspaces are quasi-static: their global geometric layout is stable, but local semantics change continually, producing repetitive geometry, dynamic clutter, and perceptual noise that defeat standard vision-based localization. We present ShelfAware, a semantic particle filter for robust

Cited by 1SourceScholar
2025

Dynamics-Compliant Trajectory Diffusion for Super-Nominal Payload Manipulation

CoRL 2025poster

Nominal payload ratings for articulated robots are typically derived from worst-case configurations, resulting in uniform payload constraints across the entire workspace. This conservative approach severely underutilizes the robot's inherent capabilities---our analysis demonstrates that manipulators…

Cited by 0SourceScholar
2025

GenTact Toolbox: A Computational Design Pipeline to Procedurally Generate Context-Driven 3D Printed Whole-Body Artificial Skins

ICRA 2025

Developing whole-body tactile skins for robots remains a challenging task, as existing solutions often prioritize modular, one-size-fits-all designs, which, while versatile, fail to account for the robot's specific shape and the unique demands of its operational context. In this work, we introduce G

Cited by 3SourceScholar
2025

Implicitly Aligning Humans and Autonomous Agents through Shared Task Abstractions

IJCAI 2025

In collaborative tasks, autonomous agents fall short of humans in their capability to quickly adapt to new and unfamiliar teammates. We posit that a limiting factor for zero-shot coordination is the lack of shared task abstractions, a mechanism humans rely on to implicitly align with teammates. To a

2025

ReSeeding Latent States for Sequential Language Understanding

EMNLP 2025

We introduce Refeeding State Embeddings aligned using Environmental Data (ReSEED), a novel method for grounding language in environmental data. While large language models (LLMs) excel at many tasks, they continue to struggle with multi-step sequential reasoning. ReSEED addresses this by producing l

2024

Clutter-Aware Spill-Free Liquid Transport via Learned Dynamics

IROS 2024poster

In this work, we present a novel algorithm to perform spill-free handling of open-top liquid-filled containers that operates in cluttered environments. By allowing liquid-filled containers to be tilted at higher angles and enabling motion along all axes of end-effector orientation, our work extends…

Cited by 0SourceScholar
2024

Exploring How Non-Prehensile Manipulation Expands Capability in Robots Experiencing Multi-Joint Failure

IROS 2024poster

This work explores non-prehensile manipulation (NPM) and whole-body interaction as strategies for enabling robotic manipulators to conduct manipulation tasks despite experiencing locked multi-joint (LMJ) failures. LMJs are critical system faults where two or more joints become inoperable; they impos…

Cited by 0SourceScholar
2023

CAT-RRT: Motion Planning that Admits Contact One Link at a Time

IROS 2023poster

Current motion planning approaches rely on binary collision checking to evaluate the validity of a state and thereby dictate where the robot is allowed to move. This approach leaves little room for robots to engage in contact with an object, as is often necessary when operating in densely cluttered…

Cited by 0SourceScholar
2022

A Framework for the Systematic Evaluation of Obstacle Avoidance and Object-Aware Controllers

IROS 2022poster

Real-time control is an essential aspect of safe robot operation in the real world with dynamic objects. We present a framework for the analysis of object-aware con-trollers, methods for altering a robot's motion to anticipate and avoid possible collisions. This framework is focused on three design…

Cited by 5SourceScholar
2022

PokeRRT: Poking as a Skill and Failure Recovery Tactic for Planar Non-Prehensile Manipulation

RA-L 2022

In this work, we introduce <italic xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">PokeRRT</i> , a novel motion planning algorithm that demonstrates poking as an effective non-prehensile manipulation skill to enable fast manipulation of objects and increase

Cited by 15SourceScholar
2021

Contact Anticipation for Physical Human–Robot Interaction with Robotic Manipulators using Onboard Proximity Sensors

IROS 2021poster

In this paper, we present a framework that unites obstacle avoidance and deliberate physical interaction for robotic manipulators. As humans and robots begin to coexist in work and household environments, pure collision avoidance is insufficient, as human–robot contact is inevitable and, in some sit…

Cited by 33SourceScholar
2021

Self-Contained Kinematic Calibration of a Novel Whole-Body Artificial Skin for Human-Robot Collaboration

IROS 2021poster

In this paper, we present an accelerometer-based kinematic calibration algorithm to accurately estimate the pose of multiple sensor units distributed along a robot body. Our approach is self-contained, can be used on any robot provided with a Denavit-Hartenberg kinematic model, and on any skin equip…

Cited by 13SourceScholar
2021

The World of an Octopus: How Reporting Bias Influences a Language Model’s Perception of Color

EMNLP 2021main

Recent work has raised concerns about the inherent limitations of text-only pretraining. In this paper, we first demonstrate that reporting bias, the tendency of people to not state the obvious, is one of the causes of this limitation, and then investigate to what extent multimodal training can miti…

2020

Cooperative Control of Mobile Robots with Stackelberg Learning

IROS 2020poster

Multi-robot cooperation requires agents to make decisions that are consistent with the shared goal without disregarding action-specific preferences that might arise from asymmetry in capabilities and individual objectives. To accomplish this goal, we propose a method named SLiCC: Stackelberg Learnin…

Cited by 12SourceScholar
2018

Preference-Based Assistance Prediction for Human-Robot Collaboration Tasks

IROS 2018poster

Human-Robot Collaboration (HRC) aims to develop robots that provide assistance to human workers while performing physical tasks. Such assistance comes in the form of supportive behaviors that are different from the actions part of the task, and that are meant to help a human worker more effectively…

Cited by 34SourceScholar
2018

Situated Human–Robot Collaboration: predicting intent from grounded natural language

IROS 2018poster

Research in human teamwork shows that a key element of fluid and fluent interactions is the interpretation of implicit verbal and non-verbal cues in context. This poses an issue to robotic platforms, however, as they have historically worked best when controlled through explicit commands that have e…

Cited by 30SourceScholar
2018

The HRC Model Set for Human-Robot Collaboration Research

IROS 2018poster

In this paper, we present a model set for designing human-robot collaboration (HRC) experiments. It targets a common scenario in HRC, which is the collaborative assembly of furniture, and it consists of a combination of standard components and custom designs. With this work, we aim at reducing the a…

Cited by 25SourcecodeScholar
2017

Transparent role assignment and task allocation in human robot collaboration

ICRA 2017poster

Collaborative robots represent a clear added value to manufacturing, as they promise to increase productivity and improve working conditions of such environments. Although modern robotic systems have become safe and reliable enough to operate close to human workers on a day-to-day basis, the workloa…

Cited by 164SourceScholar
2016

A Cartesian 6-DoF Gaze Controller for Humanoid Robots

RSS 2016poster

In robotic systems with moving cameras control of gaze allows for image stabilization, tracking and attention switching. Proper integration of these capabilities lets the robot exploit the kinematic redundancy of the oculomotor system to improve tracking performance and extend the field of view, whi…

2015

Learning peripersonal space representation through artificial skin for avoidance and reaching with whole body surface

IROS 2015poster

With robots leaving factory environments and entering less controlled domains, possibly sharing living space with humans, safety needs to be guaranteed. To this end, some form of awareness of their body surface and the space surrounding it is desirable. In this work, we present a unique method that…

Cited by 26SourceScholar