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Dikai Liu

27 accepted papers

2026

Improving Trust Estimation in Human-Robot Collaboration Using Beta Reputation at Fine-Grained Timescales

ICRA 2026poster

When interacting with each other, humans adjust their behavior based on perceived trust. To achieve similar adaptability, robots must accurately estimate human trust at sufficiently granular timescales while collaborating with humans. Beta reputation is a popular way to formalize a mathematical esti…

2025

Improving Trust Estimation in Human-Robot Collaboration Using Beta Reputation at Fine-Grained Timescales

RA-L 2025

When interacting with each other, humans adjust their behavior based on perceived trust. To achieve similar adaptability, robots must accurately estimate human trust at sufficiently granular timescales while collaborating with humans. Beta reputation is a popular way to formalize a mathematical esti

Cited by 1SourcecodeScholar
2025

Masked Sensory-Temporal Attention for Sensor Generalization in Quadruped Locomotion

ICRA 2025

With the rising focus on quadrupeds, a generalized policy capable of handling different robot models and sensor inputs becomes highly beneficial. Although several methods have been proposed to address different morphologies, it remains a challenge for learning-based policies to manage various combin

Cited by 2SourceScholar
2025

Unified Locomotion Transformer with Simultaneous Sim-to-Real Transfer for Quadrupeds

IROS 2025

Quadrupeds have gained rapid advancement in their capability of traversing across complex terrains. The adoption of deep Reinforcement Learning (RL), transformers and various knowledge transfer techniques can greatly reduce the sim-to-real gap. However, the classical teacher-student framework common

Cited by 2SourceScholar
2024

A 3D Vector Field and Gaze Data Fusion Framework for Hand Motion Intention Prediction in Human-Robot Collaboration

ICRA 2024poster

In human-robot collaboration (HRC) settings, hand motion intention prediction (HMIP) plays a pivotal role in ensuring prompt decision-making, safety, and an intuitive collaboration experience. Precise and robust HMIP with low computational resources remains a challenge due to the stochastic nature o…

Cited by 1SourcecodeScholar
2024

Comparison of Rating Scale and Pairwise Comparison Methods for Measuring Human Co-worker Subjective Impression of Robot during Physical Human-Robot Collaboration

ICRA 2024poster

The Rating Scale method has been long deemed the standard for measuring subjective perceptions. However, in the field of physical human-robot collaboration (pHRC), its aptness should be put under scrutiny due to inherent challenges such as response bias, between-subject variations, and the granulari…

Cited by 0SourceScholar
2023

Robot Trust and Self-Confidence Based Role Arbitration Method for Physical Human-Robot Collaboration

ICRA 2023poster

Role arbitration in human-robot collaboration (HRC) is a dynamically changing process that is affected by many factors such as physical workload, environmental changes and trust. In order to address this dynamic process, a trust-based role arbitration method is studied in this research. A computatio…

Cited by 5SourceScholar
2022

Computational Model of Robot Trust in Human Co-Worker for Physical Human-Robot Collaboration

RA-L 2022

Trust is key to achieving successful Human-Robot Interaction (HRI). Besides trust of the human co-worker in the robot, trust of the robot in its human co-worker should also be considered. A computational model of a robot’s trust in its human co-worker for physical human-robot collaboration (p

Cited by 15SourceScholar
2021

Prediction-Error Negativity to Assess Singularity Avoidance Strategies in Physical Human-Robot Collaboration

ICRA 2021poster

In physical human-robot collaboration (pHRC), singularity avoidance strategies are often critical to obtain stable interaction dynamics. It is hypothesised a predictable singularity avoidance strategy is preferred in pHRC as humans tend to maximise predictability when using complex systems. By using…

Cited by 7SourceScholar
2020

Dec-PPCPP: A Decentralized Predator–Prey-based Approach to Adaptive Coverage Path Planning Amid Moving Obstacles

IROS 2020poster

Enabling multiple robots to collaboratively per-form coverage path planning on complex surfaces embedded in {{\mathbb{R}}^3}{{\mathbb{R}}^3} in the presence of moving obstacles is a challenging problem that has not received much attention from researchers. As robots start to be practically deployed,…

Cited by 18SourceScholar
2020

Human Preferences in Using Damping to Manage Singularities During Physical Human-Robot Collaboration

ICRA 2020poster

When a robot manipulator approaches a kinematic singular configuration, control strategies need to be employed to ensure safe and robust operation. If this manipulator is being controlled by a human through physical human-robot collaboration, the choice of strategy for handling singularities can hav…

Cited by 14SourceScholar
2020

The SPIR: An Autonomous Underwater Robot for Bridge Pile Cleaning and Condition Assessment

IROS 2020poster

The SPIR, Submersible Pylon Inspection Robot, is developed to provide an innovative and practical solution to keep workers safe during maintenance of underwater structures in shallow waters, which involves working in dangerous water currents, and high-pressure water-jet cleaning. More advanced than…

Cited by 22SourceScholar
2019

A Unified Closed-Loop Motion Planning Approach For An I-AUV In Cluttered Environment With Localization Uncertainty

ICRA 2019poster

This paper presents a unified motion planning approach for an Intervention Autonomous Underwater Vehicle (I-AUV) in a cluttered environment with localization uncertainty. With the uncertainty being propagated by an information filter, a trajectory optimization problem closed by a Linear-Quadratic-Ga…

Cited by 14SourceScholar
2019

Effect of Mechanical Resistance on Cognitive Conflict in Physical Human-Robot Collaboration

ICRA 2019poster

Physical Human-Robot Collaboration (pHRC) is about the interaction between one or more human operator(s) and one or more robot(s) in direct contact and voluntarily exchanging forces to accomplish a common task. In any pHRC, the intuitiveness of the interaction has always been a priority, so that the…

Cited by 25SourceScholar
2019

The ANBOT: An Intelligent Robotic Co-worker for Industrial Abrasive Blasting

IROS 2019poster

We present the ANBOT, an intelligent robotic coworker for physical human-robot collaboration. The ANBOT system assists workers performing industrial abrasive blasting, shielding them from the large forces experienced during this physically demanding task. The co-operative robotic system combines the…

Cited by 31SourceScholar
2016

Angled sensor configuration capable of measuring tri-axial forces for pHRI

ICRA 2016

This paper presents a new configuration for single axis tactile sensor arrays molded in rubber to enable tri-axial force measurement. The configuration requires the sensing axis of each sensor in the array to be rotated out of alignment with respect to external forces. This angled sensor array measu

Cited by 11SourceScholar
2016

Exploring in 3D with a climbing robot: Selecting the next best base position on arbitrarily-oriented surfaces

IROS 2016poster

This paper presents an approach for selecting the next best base position for a climbing robot so as to observe the highest information gain about the environment. The robot is capable of adhering to and moving along and transitioning to surfaces with arbitrary orientations. This approach samples kn…

Cited by 8SourceScholar
2016

Kinematic control of an Autonomous Underwater Vehicle-Manipulator System (AUVMS) using autoregressive prediction of vehicle motion and Model Predictive Control

ICRA 2016

Autonomous Underwater Vehicle-Manipulator Systems (AUVMS) operating in shallow waters or near-surface environments may be exposed to wave disturbances which will cause undesired motion of the end effector. This paper presents a method to maneuver the manipulator joints and counteract undesired motio

Cited by 18SourceScholar
2016

Modeling and stochastic optimization of complete coverage under uncertainties in multi-robot base placements

IROS 2016poster

Uncertainties in base placements of mobile, autonomous industrial robots can cause incomplete coverage in tasks such as grit-blasting and spray painting. Sensing and localization errors can cause such uncertainties in robot base placements. This paper addresses the problem of collaborative complete…

Cited by 20SourceScholar
2015

An approach to base placement for effective collaboration of multiple autonomous industrial robots

ICRA 2015poster

There are many benefits for the deployment of multiple autonomous industrial robots to carry out a task, particularly if the robots act in a highly collaborative manner. Collaboration can be possible when each robot is able to autonomously explore the environment, localize itself, create a map of th…

Cited by 29SourceScholar