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Uikyum Kim

12 accepted papers

2023

Control of Shape Memory Alloy Actuator via Electrostatic Capacitive Sensor for Meso-scale Mirror Tilting System

ICRA 2023poster

Shape memory alloy (SMA) has superior actuation capability over the limit of the scale. However, inherently low controllability is a primary issue that hinders practical usage. To address this challenge, this paper presents an SMA-based artificial muscle actuator capable of the displacement sensing…

Cited by 1SourceScholar
2022

Development of a Three-Axis Monolithic Flexure-Based Ground Reaction Force Sensor for Various Gait Analysis

RA-L 2022

In this letter, we developed a monolithic flexure-based three-axis ground reaction force (GRF) sensor to analyze various gaits, including walking, running, and jumping. The GRF sensor requires different force capacities on each axis. In order to satisfy the force range requirements, a simple circula

Cited by 10SourceScholar
2020

6-Axis Force/Torque Sensor With a Novel Autonomous Weight Compensating Capability for Robotic Applications

RA-L 2020

Force/Torque(F/T) sensing technology enables a dexterous robot control such as direct teaching, master-slave system, and pick-and-place task. In general, 6-axis F/T sensor is attached to the end-effector of the robot manipulator to assist in utilizing advanced robot systems. However, in actual appli

Cited by 38SourceScholar
2020

Six-Axis Force/Torque Fingertip Sensor for an Anthropomorphic Robot Hand

RA-L 2020

To manipulate objects using a robot hand, it is important to measure the information of the various forces on the fingertips. In this letter, a six-axis force/torque (F/T) fingertip sensor for a robot hand is introduced. The sensor was developed to provide the ability to measure six-axis F/T while r

Cited by 38SourceScholar
2019

Compensation of Environmental Influences on Sensorized-Forceps for Practical Surgical Tasks

RA-L 2019

For more secure and delicate robotic surgery, force sensing ability is essential but it has still not been used in actual robot surgery. This is because the environmental factors that occur during actual operation affect the sensor and the sensor cannot give reliable force information. In this lette

Cited by 14SourceScholar
2017

A novel POWERPACK for robotic application, integrated torque sensor, harmonic drive and motor

IROS 2017poster

Force-sensing system represents one of the vital components of robotic systems for physical interaction performances. This system is facilitated by the force controllable actuators. However, to make a force controllable actuator, it is still a challenging subject for the majority of the robotic syst…

Cited by 3SourceScholar
2017

Interactive haptic display based on soft actuator and soft sensor

IROS 2017poster

This paper demonstrates a new haptic display based on soft actuator and soft sensor. The device consists of an array rigid coupling actuator and an array tactile sensor which configured sensor located on the top of actuator. The actuator includes a frame with rigid coupling made by silicone and a di…

Cited by 28SourceScholar
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
2016

A highly sensitive dual mode tactile and proximity sensor using Carbon Microcoils for robotic applications

ICRA 2016poster

This paper presents a highly sensitive dual mode tactile and proximity sensor for robotic applications that uses Carbon Microcoils (CMCs). The sensor consists of multiple electrode layers printed on a Flexible Printed Circuit Board (FPCB) and a dielectric substrate into which the CMCs are dispersed.…

Cited by 34SourceScholar
2016

Development of a grasping force-feedback user interface for surgical robot system

IROS 2016poster

This paper presents a grasping force-feedback user interface (GFUI) which transfers the accurate kinesthetic force detected during robot-assisted minimally invasive surgery (RMIS) to a user, and allows the users to perform grasping motions with articulation and intuition. Using the GFUI, a developed…

Cited by 20SourceScholar
2016

Development of surgical forceps integrated with a multi-axial force sensor for minimally invasive robotic surgery

IROS 2016poster

This paper aims to develop novel surgical forceps integrated with a three-axis force sensor for robot-assisted minimally invasive surgery (RMIS). To detect accurate force sensing, a force sensing system is integrated to a gripper of a surgical instrument. At the gripper side, two possible locations…

Cited by 18SourceScholar
2015

Printable monolithic hexapod robot driven by soft actuator

ICRA 2015poster

Aiming to apply soft actuators in driving a walking robot, the design, fabrication and locomotion of a bio-inspired printable hexapod robot are studied. The robot mimics the insect's design and walking posture by driving six legs with alternating tripod gait which provides its locomotive adaptabilit…

Cited by 47SourceScholar