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Joao Ramos

12 accepted papers

2024

Cooperative Modular Manipulation with Numerous Cable-Driven Robots for Assistive Construction and Gap Crossing

IROS 2024poster

Soldiers in the field often need to cross negative obstacles, such as rivers or canyons, to reach goals or safety. Military gap crossing involves on-site temporary bridges construction. However, this procedure is conducted with dangerous, time and labor intensive operations, and specialized machiner…

Cited by 1SourceScholar
2024

Toward Control of Wheeled Humanoid Robots with Unknown Payloads: Equilibrium Point Estimation via Real-to-Sim Adaptation

IROS 2024poster

Model-based controllers using a linearized model around the system’s equilibrium point is a common approach in the control of a wheeled humanoid due to their less computational load and ease of stability analysis. However, controlling a wheeled humanoid robot while it lifts an unknown object present…

Cited by 0SourceScholar
2023

Design and Control of a Ballbot Drivetrain with High Agility, Minimal Footprint, and High Payload

IROS 2023poster

This paper presents the design and control of a ballbot drivetrain that aims to achieve high agility, minimal footprint, and high payload capacity while maintaining dynamic stability. Two hardware platforms and analytical models were developed to test design and control methodologies. The full-scale…

Cited by 10SourceScholar
2022

Hands-free Telelocomotion of a Wheeled Humanoid

IROS 2022poster

Robotic systems capable of Dynamic Mobile Manipulation (DMM) tasks combine dynamic manipulation and locomotion and could facilitate dangerous or physically demanding labor. For instance, firefighter humanoid robots could leverage their body by leaning against collapsed building rubble to push it asi…

Cited by 8SourceScholar
2022

Hybrid LMC: Hybrid Learning and Model-based Control for Wheeled Humanoid Robot via Ensemble Deep Reinforcement Learning

IROS 2022poster

Control of wheeled humanoid locomotion is a challenging problem due to the nonlinear dynamics and under-actuated characteristics of these robots. Traditionally, feedback controllers have been utilized for stabilization and locomotion. However, these methods are often limited by the fidelity of the u…

Cited by 14SourceScholar
2021

A Comparison Between Joint Space and Task Space Mappings for Dynamic Teleoperation of an Anthropomorphic Robotic Arm in Reaction Tests

ICRA 2021poster

Teleoperation—i.e., controlling a robot with human motion—proves promising in enabling a humanoid robot to move as dynamically as a human. But how to map human motion to a humanoid robot matters because a human and a humanoid robot rarely have identical topologies and dimensions. This work presents…

Cited by 16SourceScholar
2021

HOPPY: An Open-source Kit for Education with Dynamic Legged Robots

IROS 2021poster

This paper introduces HOPPY, an open-source, low-cost, robust, and modular kit for robotics education. The robot dynamically hops around a rotating gantry with a fixed base. The kit is intended to lower the entry barrier for studying dynamic robots and legged locomotion with real systems. It bridges…

Cited by 16SourceScholar
2021

The dynamic effect of mechanical losses of transmissions on the equation of motion of legged robots

ICRA 2021poster

Industrial manipulators do not collapse under their own weight when powered off due to the friction in their joints. Although these mechanism are effective for stiff position control of pick-and-place, they are inappropriate for legged robots that must rapidly regulate compliant interactions with th…

Cited by 11SourceScholar
2018

Facilitating Model-Based Control Through Software-Hardware Co-Design

ICRA 2018poster

This paper exemplifies the design process for legged machines capable of dynamic behaviors. In order to achieve high performance robots, it is crucial to guarantee harmonious integration between software and hardware. Hence, the development of such capable robotic platforms must address design requi…

Cited by 32SourceScholar
2017

Improving humanoid posture Teleoperation by Dynamic Synchronization through operator motion anticipation

ICRA 2017poster

This paper presents the ongoing work towards enabling robots to achieve highly dynamic behavior through full-body teleoperation. Human operator and robot slave have independent balance controllers that interact with each other during the experiments. First we present a compliant balancing controller…

Cited by 6SourceScholar
2015

A Balance Feedback Human Machine Interface for humanoid teleoperation in dynamic tasks

IROS 2015poster

This paper introduces a novel Balance Feedback Interface (BFI) that addresses the problem of bilateral feedback for teleoperation of humanoid robots. With this new device we expect to enhance robot's high force manipulation performance to a level comparable to humans by dynamically synchronizing mas…

Cited by 16SourceScholar