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Jaemin Lee

13 accepted papers

2025

Safety-Critical Locomotion of Biped Robots in Infeasible Paths: Overcoming Obstacles During Navigation Toward Destination

ICRA 2025

This paper proposes a safety-critical locomotion control framework employed for legged robots exploring through infeasible path in obstacle-rich environments. Our research focus is on achieving safe and robust locomotion where robots confront unavoidable obstacles en route to their designated destin

Cited by 0SourceScholar
2024

Safety-Critical Coordination of Legged Robots via Layered Controllers and Forward Reachable Set based Control Barrier Functions

ICRA 2024poster

This paper presents a safety-critical approach to the coordination of robots in dynamic environments. To this end, we leverage control barrier functions (CBFs) with the forward reachable set to guarantee the safe coordination of the robots while preserving a desired trajectory via a layered controll…

Cited by 3SourceScholar
2024

Safety-critical Autonomous Inspection of Distillation Columns using Quadrupedal Robots Equipped with Roller Arms

IROS 2024poster

This paper proposes a comprehensive framework designed for the autonomous inspection of complex environments, with a specific focus on multi-tiered settings such as distillation column trays. Leveraging quadruped robots equipped with roller arms, and through the use of onboard perception, we integra…

Cited by 1SourceScholar
2024

Safety-critical Control of Quadrupedal Robots with Rolling Arms for Autonomous Inspection of Complex Environments

ICRA 2024poster

This paper presents a safety-critical control framework tailored for quadruped robots equipped with a roller arm, particularly when performing locomotive tasks such as autonomous robotic inspection in complex, multi-tiered environments. In this study, we consider the problem of operating a quadruped…

Cited by 2SourceScholar
2023

Data-Driven Adaptation for Robust Bipedal Locomotion with Step-to-Step Dynamics

IROS 2023poster

This paper presents an online framework for synthesizing agile locomotion for bipedal robots that adapts to unknown environments, modeling errors, and external disturbances. To this end, we leverage step-to-step (S2S) dynamics which has proven effective in realizing dynamic walking on underactuated…

Cited by 8SourceScholar
2023

Hierarchical Relaxation of Safety-critical Controllers: Mitigating Contradictory Safety Conditions with Application to Quadruped Robots

IROS 2023poster

The safety-critical control of robotic systems often must account for multiple, potentially conflicting, safety constraints. This paper proposes novel relaxation techniques to address safety-critical control problems in the presence of conflicting safety conditions. In particular, Control Barrier Fu…

Cited by 13SourceScholar
2023

Real-Time Model Predictive Control for Industrial Manipulators with Singularity-Tolerant Hierarchical Task Control

ICRA 2023poster

This paper proposes a real-time model predictive control (MPC) strategy for accomplishing multiple tasks using robots within a finite-time horizon. In industrial robotic applications, it is crucial to consider various constraints to ensure that joint position, velocity, and torque limits are not exc…

Cited by 18SourceScholar
2023

Safety-Critical Coordination for Cooperative Legged Locomotion via Control Barrier Functions

IROS 2023poster

This paper presents a safety-critical approach to the coordinated control of cooperative robots locomoting in the presence of fixed (holonomic) constraints. To this end, we leverage control barrier functions (CBFs) to ensure the safe cooperation of the robots while maintaining a desired formation an…

Cited by 12SourceScholar
2023

Sample Efficient Dynamics Learning for Symmetrical Legged Robots: Leveraging Physics Invariance and Geometric Symmetries

ICRA 2023poster

Model generalization of the underlying dynamics is critical for achieving data efficiency when learning for robot control. This paper proposes a novel approach for learning dynamics leveraging the symmetry in the underlying robotic system, which allows for robust extrapolation from fewer samples. Ex…

Cited by 3SourceScholar
2022

A Self-Supervised Sampler for Efficient Action Recognition: Real-World Applications in Surveillance Systems

RA-L 2022

The common paradigm of CNN-based action recognition modelsis to simply use the average of the dense predictions from every frame. However, these dense predictions are inefficient since all frames are evenly utilized regardless of the existence of the action. In real-time action recognition applicati

Cited by 16SourcecodeScholar
2020

Data-Efficient and Safe Learning for Humanoid Locomotion Aided by a Dynamic Balancing Model

RA-L 2020

In this letter, we formulate a novel Markov Decision Process (MDP) for safe and data-efficient learning for humanoid locomotion aided by a dynamic balancing model. In our previous studies of biped locomotion, we relied on a low-dimensional robot model, commonly used in high-level Walking Pattern Gen

Cited by 20SourceScholar
2016

Tele-operation system with reliable grasping force estimation to compensate for the time-varying sEMG feature

ICRA 2016

This paper presents a real-time framework for tele-manipulation by using sEMG signals to estimate both human motion and force intention. Our previous study showed that the ability to detect discrete force levels was not applicable to complex tasks such as grasping, holding, and manipulating various

Cited by 11SourceScholar
2015

A robust control method of multi-DOF power-assistant robots for unknown external perturbation using sEMG signals

IROS 2015poster

This paper presents a control method of multi-DOF power assistant robots for anatomical multi-axis joints such as the wrist and the ankle. It is difficult to calculate the accurate direction of human motion intention during manipulating an object due to discrepancy between the calculated force from…

Cited by 8SourceScholar