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Hansol Kang

9 accepted papers

2026

Friction-Aware Actuator Modeling for Accurate Torque Estimation Using External Sensors

ICRA 2026poster

Modern robotic controllers are typically designed in simulation and subsequently deployed on real robots. However, discrepancies between simulated and actual actuator torque often lead to sim-to-real (sim2real) problems. Various actuator approaches have been proposed to address this problem, but whe…

Cited by 0Scholar
2026

RoA-Planner: Rotatable Area-Based Path Planner in Dense Spaces (I)

ICRA 2026poster

Path planning in obstacle-dense environments is a challenging problem, particularly for robots with asymmetric rectangular footprints. To address this problem, we propose a novel collision-checking approach, called a Rotatable Area, which represents a range of heading angles where the robot can rota…

Cited by 0Scholar
2025

Development of Two-DOF Simultaneous Gravity Compensator for Mobile Manipulator

RA-L 2025

A manipulator mounted on a mobility platform requires a design that simultaneously meets the demands for lightweight, compactness, and energy efficiency. A gravity compensator is an effective solution that mechanically offsets the gravity torque caused by the weight of the manipulator links, enablin

Cited by 1SourceScholar
2024

CoAS-Net: Context-Aware Suction Network With a Large-Scale Domain Randomized Synthetic Dataset

RA-L 2024

Robotic grasping is one of the essential skills in robotics. From industrial to housework, robots are required to handle objects, enabling them to interact with their surroundings. Among the various tasks in robotic grasping, bin-picking is considered one of the most challenging because of the clutt

Cited by 6SourceScholar
2019

Force-controllable Quadruped Robot System with Capacitive-type Joint Torque Sensor

ICRA 2019poster

This paper introduces a force-controllable quadruped robot system consists of twelve Actuator Modules embedded a novel Capacitive-type Joint Torque Sensor (CJTS) which is accurate (0.05 Nm), robust to impact, and easy to manufacture at low cost. The Actuator Module with CJTS shows accurate joint tor…

Cited by 10SourceScholar
2019

Whole-Body Motion and Landing Force Control for Quadrupedal Stair Climbing

IROS 2019poster

In this paper, we present a novel framework for quadrupedal stair climbing, which considers force interaction with stairs. For stable and robust climbing, a key issue is to avoid falling down on the stairs. From this point of view, control to minimize rate of change of angular momentum about Center…

Cited by 18SourceScholar
2017

Development of torque controllable leg for running robot, AiDIN-IV

IROS 2017poster

Intrinsic problems for legged robots are `low energy efficiency' and `slow speed'. In this paper, we introduce a possible solution achieved through biological observations and developed a robotic leg applying the proposed method. The proposed robotic leg, AiDIN-IV Leg (Artificial DIgitigrade for Nat…

Cited by 9SourceScholar
2017

Study on quadruped bounding with a passive compliant spine

IROS 2017poster

In running, legged animals take advantages of their flexible bodies to increase their locomotion performance, resulting in superior mobility and fast motions. Previous works on quadruped robots mostly used the simplified model with massless legs. However, in reality, a leg consists of two or three s…

Cited by 11SourceScholar
2017

Trajectory design and control of quadruped robot for trotting over obstacles

IROS 2017poster

Various control strategies using trajectory planning, object recognition and learning are researched for avoiding obstacles when legged robot is walking. In this paper, designed trajectory by using Non Uniform Basis Spline (NUBS) curve and control strategy, by using proposed trajectory, to effective…

Cited by 21SourceScholar