Hyukryeol Choi
Sungkyunkwan University · Engineering
About the Lab
Professor Hyukryeol Choi's research lab specializes in intelligent actuator technologies and soft robotics, focusing on dielectric elastomer-based artificial muscles and advanced transducer materials. The lab develops novel monolithic and flexible actuator designs—such as the Single Body Dielectric Elastomer Actuator (SDEA) and Tube–Spring–Actuator (TSA)—for applications in robotics, human-robot interaction, and pipeline inspection. Key research directions include energy-efficient actuation, real-time collision detection in human-robot shared workspaces, and the development of highly stretchable, tunable dielectric elastomer materials for high-performance transducers. The lab emphasizes practical, lightweight, and biomimetic solutions for next-generation soft robotic systems.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15This paper presents a novel design of dielectric elastomer actuator (DEA), called single body dielectricelastomer actuator (SDEA), to improve the performance of existing DEAs. The DEA is typically configuredwith stacking multiple dielectric elastomer film and linearly contracted according to the applied voltage. SDEA isfabricated monolithically without external frame and has the advantages of flexibility and light weight. Thus, it isapplicable to various configurations of actuators such as twist
This paper presents an in-pipe robot, called MRINSPECT V (Multifunctional Robotic crawler for In-pipe inSPECTion V), which is under development for the inspection of pipelines with a nominal 8-inch inside diameter. To travel freely in every pipeline element, the robot adopts a differential driving mechanism that we have developed. Furthermore, by introducing clutches in transmitting driving power to the wheels, MRINSPECT V is able to select the suitable driving method according to the shape of t
Face robots capable of expressing their emotional status, can be adopted as an efficient tool for friendly communication between the human and the machine. In this paper, we present a face robot actuated with artificial muscle based on dielectric elastomer. By exploiting the properties of dielectric elastomer, it is possible to actuate the covering skin, eyes as well as provide human-like expressivity without employing complicated mechanisms. The robot is driven by seven actuator modules such ey
This paper presents the development and experimental evaluation of a collision detection method for robotic manipulators sharing aworkspace with humans. Fast and robust collision detection is important for guaranteeing safety and preventing false alarms. The maincause of a false alarm is modeling error. We use the characteristic of the maximum frequency boundary of the manipulator's dynamicmodel. The tendency of the frequency boundary’s location in the frequency domain is applied to the collisio
This study presents a highly stretchable dielectric elastomer material for transducers based on acrylonitrilebutadiene rubber (NBR). The material has advantages in that its mechanical and electrical properties can bemodified according to the requirements of applications by changing the content of additives such as carbon black(CB), multi-walled carbon nanotubes (MWCNT), and graphite (GP) in the NBR matrix. First, the changes of dielectricpermittivity depending on the additives are discussed. Mor
In this paper, we present an artificial muscle actuator producing rectilinear motion, called the Tube–Spring–Actuator (TSA). The TSA is supposed to be a prospective substitute in areas requiring macro forces such as robotics. It is simply configured from a synthetic elastomer tube with an inserted spring. The design of the TSA is described in detail and its analysis is conducted to investigate the characteristics of the actuator based on the derived model. In addition, the performance of the pro
This paper presents a map building method for an in-pipe robot to navigate inside urban gas pipelines autonomously, whose configuration is unknown or partially known. In the first, we explain the reason why the navigation in the pipeline is difficult and then, present a method for obtaining a robot’s posture by using a pipeline’s unique geometrical features. The robot can obtain its heading direction by detecting the standardized geometries of pipe elements. Based on the method, we propose a rob
The actuation of electrostrictive polymer (EP) actuator under electric field is known due to the electrostatic force between the parallel compliant electrodes on both sides of polymer film, which means the magnitude of electric potential between the electrodes is one of the determinative parameters of the actuation. The actuation is also dependent on the material properties such as dielectric constant and elastic modulus of polymers. In order to maximize the actuation behavior, high dielectric c
This paper proposes a method of exploring the local shape of an unknown object using the force and torque information obtained from active touch. In the first, we present a method to estimate an unknown curvature, using rolling and sliding motion with a force/torque sensor attached to the fin-gertip of the hand. Then, the normal curvature equation from 2D curvatures is obtained. Finally we present a reconstruction algorithm of local geometry by using a normal curvature equation, which is compose
Edge detection plays an important role in object recognition and exploration. In this paper, we propose an efficient tracking algorithm, which uses a coarse resolution tactile sensor set, for edge detection of a 2D shape object. Although many researchers have often used a tactile sensor with high resolution such as a 10x10 or higher for edge detection, in this research, we use a 2x2 tactile sensor to track the edges of an object. Using this type of low resolution sensor, we can reduce the manufa
The synthetic elastomer based on acrylonitrile butadiene rubber (NBR) has been recently developed as a kind of dielectric elastomer actuators (DEAs). Its advantages are that its properties can be modified according to the requirements of applications. In this paper, we report a comprehensive study on the effects of plasticizers including diisodecyl phthalate (DIDP), dioctyladipate (DOA), and dioctyl phthalate (DOP) as well as a high dielectric additive,which is, barium titanate (BaTiO3) with res
In this paper, we present a control method for a quadruped walking robot inspired from the locomotion of quadrupeds. A simple and useful framework for controlling a quadruped walking robot is presented, which is obtained by observing the stimulus-reaction mechanism, the gravity load receptor and the manner of generating repetitive motions from quadrupeds. In addition, we propose a new rhythmic pattern generator that can relieve the large computational burden on solving the kinematics. The propos
This paper presents a simple method to control the motion of a quadruped robot in unknown rough terrain using a full dynamic model. First, using the stiffness control method, the behavior of the four legs is approximated using four 3D spring damper systems. In this way, the dynamic model can be derived in Cartesian space. Based on this model, a control strategy is proposed to preserve the asymp-totical stability of the system. In addition, a reflex motion control is introduced to cope with the r
Nanocomposites are a new class of composites which are typically nanoparticle-filled polymers. One promising kind of nanocomposite is clay-based and polymer-layered silicates nanocomposites because the starting clay materials are naturally abundant and, also, their intercalation chemistry is well understood at the present time. A certain clay, Montmorillonite (M<SUB>x</SUB>Al<SUB>4- x</SUB>Mg<SUB>x</SUB>)Si<SUB>8</SUB>O<SUB>20$(OH</SUB><SUB>4</SUB> has two-dimensional layers of their crystal str
Research Areas
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