← Search

Beatrice Capelli

8 accepted papers

2022

Multi-Robot Adversarial Resilience using Control Barrier Functions

RSS 2022poster

In this paper we present a control barrier function-based (CBF) resilience controller that provides resilience in a multi-robot network to adversaries. Previous approaches provide resilience by virtue of specific linear combinations of multiple control constraints. These combinations can be difficul…

Cited by 31SourcePDFScholar
2021

Decentralized Connectivity Maintenance with Time Delays using Control Barrier Functions

ICRA 2021poster

Connectivity maintenance is crucial for the real world deployment of multi-robot systems, as it ultimately allows the robots to communicate, coordinate and perform tasks in a collaborative way. A connectivity maintenance controller must keep the multi-robot system connected independently from the sy…

Cited by 29SourceScholar
2020

Connectivity Maintenance: Global and Optimized approach through Control Barrier Functions

ICRA 2020poster

Connectivity maintenance is an essential aspect to consider while controlling a multi-robot system. In general, a multi-robot system should be connected to obtain a certain common objective. Connectivity must be kept regardless of the control strategy or the objective of the multi-robot system. Two…

Cited by 57SourceScholar
2020

Teleoperation of Multi-Robot Systems to Relax Topological Constraints

ICRA 2020poster

Multi-robot systems are able to achieve common objectives exchanging information among each other. This is possible exploiting a communication structure, usually modeled as a graph, whose topological properties (such as connectivity) are very relevant in the overall performance of the multirobot sys…

Cited by 6SourceScholar
2019

Understanding Multi-Robot Systems: on the Concept of Legibility

IROS 2019poster

Legibility can be defined as the ability of a robot to communicate its intent to the user. Legibility is relatively little investigated in multi-robot systems, but, in the literature, studies exist where the trajectory of manipulators is analyzed as a factor to improve the collaboration between robo…

Cited by 18SourceScholar
2018

Passivity Preserving Force Scaling for Enhanced Teleoperation of Multirobot Systems

RA-L 2018

In this letter, we address the problem of teleoperating a multirobot system, and we propose a methodology for letting the user teleoperate the group of robots according to some desired dynamic behavior. Specifically, we propose a novel methodology for the teleoperation of multirobot systems, where a

Cited by 15SourceScholar