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Jemin Hwangbo

22 accepted papers

2026

Learning Dynamic Pick-and-Place for a Legged Manipulator

RA-L 2026

Legged manipulators extend robotic capabilities beyond static manipulation by integrating agile locomotion with versatile arm control. However, achieving precise manipulation while maintaining coordinated locomotion remains a major challenge. This work presents a hierarchical reinforcement learning

Cited by 0SourceScholar
2026

Learning Quadrupedal Locomotion for a Heavy Hydraulic Robot Using an Actuator Model

ICRA 2026poster

The simulation-to-reality (sim-to-real) transfer of large-scale hydraulic robots presents a significant challenge in robotics because of the inherent slow control response and complex fluid dynamics. The complex dynamics result from the multiple interconnected cylinder structure and the difference i…

2025

Legged Robot State Estimation with Invariant Extended Kalman Filter Using Neural Measurement Network

ICRA 2025

This paper introduces a novel proprioceptive state estimator for legged robots that combines model-based filters with deep neural networks. In environments where vision systems are not reliable, proprioceptive state estimators become indispensable. Traditionally, proprioceptive state estimators are

Cited by 16SourceScholar
2024

Learning Semantic Traversability With Egocentric Video and Automated Annotation Strategy

RA-L 2024

For reliable autonomous robot navigation in urban settings, the robot must have the ability to identify semantically traversable terrains in the image based on the semantic understanding of the scene. This reasoning ability is based on semantic traversability, which is frequently achieved using sema

Cited by 13SourceScholar
2024

Learning Vehicle Dynamics From Cropped Image Patches for Robot Navigation in Unpaved Outdoor Terrains

RA-L 2024

In the realm of autonomous mobile robots, safe navigation through unpaved outdoor environments remains a challenging task. Due to the high-dimensional nature of sensor data, extracting relevant information becomes a complex problem, which hinders adequate perception and path planning. Previous works

Cited by 3SourceScholar
2023

Imitating and Finetuning Model Predictive Control for Robust and Symmetric Quadrupedal Locomotion

RA-L 2023

Control of legged robots is a challenging problem that has been investigated by different approaches, such as model-based control and learning algorithms. This work proposes a novel Imitating and Finetuning Model Predictive Control (IFM) framework to take the strengths of both approaches. Our framew

Cited by 28SourceScholar
2022

Concurrent Training of a Control Policy and a State Estimator for Dynamic and Robust Legged Locomotion

RA-L 2022

In this letter, we propose a locomotion training framework where a control policy and a state estimator are trained concurrently. The framework consists of a policy network which outputs the desired joint positions and a state estimation network which outputs estimates of the robot’s states such as

Cited by 232SourcecodeScholar
2022

D-Grasp: Physically Plausible Dynamic Grasp Synthesis for Hand-Object Interactions

CVPR 2022poster

We introduce the dynamic grasp synthesis task: given an object with a known 6D pose and a grasp reference, our goal is to generate motions that move the object to a target 6D pose. This is challenging, because it requires reasoning about the complex articulation of the human hand and the intricate p…

Cited by 111PDFcodeScholar
2022

Design of KAIST HOUND, a Quadruped Robot Platform for Fast and Efficient Locomotion with Mixed-Integer Nonlinear Optimization of a Gear Train

ICRA 2022poster

This paper introduces a design method for an efficient and agile quadruped robot. A mixed-integer optimization formulation including the number of gear teeth is derived to obtain the optimal gear ratio that minimizes cost for a running-trot with the target speed of 3 m/s. With the inclusion of integ…

Cited by 35SourceScholar
2022

Learning Forward Dynamics Model and Informed Trajectory Sampler for Safe Quadruped Navigation

RSS 2022poster

For autonomous quadruped robot navigation in various complex environments, a typical SOTA system is composed of four main modules -- mapper, global planner, local planner, and command-tracking controller -- in a hierarchical manner. In this paper, we build a robust and safe local planner which is de…

2022

Monte Carlo Tree Search Gait Planner for Non-Gaited Legged System Control

ICRA 2022poster

In this work, a non-gaited framework for legged system locomotion is presented. The approach decouples the gait sequence optimization by considering the problem as a decision-making process. The redefined contact sequence problem is solved by utilizing a Monte Carlo Tree Search (MCTS) algorithm that…

Cited by 21SourceScholar
2021

Force Control of a Hydraulic Actuator With a Neural Network Inverse Model

RA-L 2021

In this study, a learning-based force controller for a hydraulic actuator is presented. We propose a control method with an inverse model composed of a deep neural network, which accurately tracks a force trajectory. This learning-based controller can be trained offline using force and position data

Cited by 38SourceScholar
2021

Legged Robot State Estimation With Dynamic Contact Event Information

RA-L 2021

This letter presents a state estimation algorithm for the legged robot by defining the problem as a Maximum A Posteriori (MAP) estimation problem and solving the problem with the Gauss-Newton algorithm. Moreover, marginalization by the Schur Complement method is adopted to make a fixed size problem.

Cited by 49SourceScholar
2018

Cable-Driven Actuation for Highly Dynamic Robotic Systems

IROS 2018poster

This paper presents the design and experimental evaluations of an articulated robotic limb called Capler-Leg. The key element of Capler-Leg is its single-stage cable-pulley transmission combined with a high-gap radius motor. Our cable-pulley system is designed to be as light-weight as possible and t…

Cited by 41SourceScholar
2017

Dynamic locomotion and whole-body control for quadrupedal robots

IROS 2017poster

This paper presents a framework which allows a quadrupedal robot to execute dynamic gaits including trot, pace and dynamic lateral walk, as well as a smooth transition between them. Our method relies on an online ZMP based motion planner which continuously updates the reference motion trajectory as…

Cited by 170SourceScholar
2016

ANYmal - a highly mobile and dynamic quadrupedal robot

IROS 2016poster

This paper introduces ANYmal, a quadrupedal robot that features outstanding mobility and dynamic motion capability. Thanks to novel, compliant joint modules with integrated electronics, the 30 kg, 0.5 m tall robotic dog is torque controllable and very robust against impulsive loads during running or…

Cited by 1094SourceScholar
2016

Probabilistic foot contact estimation by fusing information from dynamics and differential/forward kinematics

IROS 2016poster

Legged robots require a robust and fast responding feet contact detection strategy. Common force sensors are often too heavy and can be easily damaged during impacts with the terrain. Therefore, it is desirable to detect a contact without a force sensor. This paper introduces a probabilistic contact…

Cited by 67SourceScholar
2015

Direct state-to-action mapping for high DOF robots using ELM

IROS 2015poster

Methods of optimizing a single trajectory are mature enough for planning in many applications. Yet such optimization methods applied to high Degree-Of-Freedom robots either consume too much time to be real-time or approximate the dynamics such that they lack physical consistency. In this paper, we p…

Cited by 9SourceScholar