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유정훈 교수

Jeong Hoon Yoo

연세대학교 기계공학부 · 공학

연구실 소개

유정훈 교수의 연구실은 전자기장 내에서의 최적 구조 설계를 핵심으로 하며, 자기장의 세기와 에너지를 극대화하는 데 초점을 맞춘 다학제적 연구를 수행합니다. 특히 허용성 설계법(Homogenization Design Method)과 SIMP 기반의 토폴로지 최적화 기법을 활용해 모터, 안테나, 전자기 커플러 등 전기기계 장치의 성능 향상을 위한 최적의 물리적 구조를 도출합니다. 또한 유한요소해석 기반의 정밀한 모델링과 다재료 최적화 기법을 접목해 실용적이고 정밀한 설계 솔루션을 개발하고 있습니다.

토폴로지 최적화전기기계 설계자기장 최적화SIMP유한요소해석

연구 현황

논문 수
210
총 인용 수
2,455
최근 5년 논문
21
주요 분야
공학

연구 성과 추이

표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.

5개년 연도별 논문 게재 수
21총합
2022
2023
2024
2025
2026
5개년 연도별 피인용 수
100총합
20222023202420252026

주요 논문

15
1
논문|인용수 87·2000
Structural optimization in magnetic devices by the homogenization design method
Jeonghoon Yoo, Noboru Kikuchi, John L. Volakis
SJR Q2IEEE Transactions on Magnetics

The homogenization design method (HDM) is extended to obtain an optimal topology of magnetic fields. This is accomplished by maximizing the magnetic mean compliance in a given region of the device. HDM is applied to a three-dimensional case, taking into account the saturation effect of the material. Results show that HDM is valid to maximize the vector potential and the magnetic energy. This method can also be applied to increase the performance of motors and antennas.

Civil and Structural EngineeringEngineering
2
논문|인용수 69·2021
Machine learning-combined topology optimization for functionary graded composite structure design
Cheolwoong Kim, Jaewook Lee, Jeonghoon Yoo
SJR Q1Computer Methods in Applied Mechanics and Engineering
Civil and Structural EngineeringEngineering
3
논문|인용수 66·2008
Structural optimization of ferromagnetic materials based on the magnetic reluctivity for magnetic field problems
Jae Seok Choi, Jeonghoon Yoo
SJR Q1Computer Methods in Applied Mechanics and Engineering
Civil and Structural EngineeringEngineering
4
논문|인용수 56·2016
A novel P-norm correction method for lightweight topology optimization under maximum stress constraints
Kangwon Lee, Kisoo Ahn, Jeonghoon Yoo
SJR Q1Computers & Structures
Civil and Structural EngineeringEngineering
5
논문|인용수 54·2009
Simultaneous structural topology optimization of electromagnetic sources and ferromagnetic materials
Jae Seok Choi, Jeonghoon Yoo
SJR Q1Computer Methods in Applied Mechanics and Engineering
Civil and Structural EngineeringEngineering
6
논문|인용수 51·2011
FEM based simulation of the pulsed laser ablation process in nanosecond fields
Hee Seung Lim, Jeonghoon Yoo
SJR Q2Journal of Mechanical Science and Technology
Computational MechanicsEngineering
7
논문|인용수 49·2004
An optimization of a multi-layered plate under ballistic impact
Myung‐Soo Park, Jeonghoon Yoo, Dong-Teak Chung
SJR Q1International Journal of Solids and Structures
Materials ChemistryMaterials Science
8
논문|인용수 48·2020
FreeFEM++ code for reaction-diffusion equation–based topology optimization: for high-resolution boundary representation using adaptive mesh refinement
Cheolwoong Kim, Mingook Jung, Takayuki Yamada, Shinji Nishiwaki, Jeonghoon Yoo
SJR Q1Structural and Multidisciplinary Optimization
Civil and Structural EngineeringEngineering
9
논문|인용수 48·2000
Topology optimization in magnetic fields using the homogenization design method
Jeonghoon Yoo, Noboru Kikuchi
SJR Q1International Journal for Numerical Methods in EngineeringOA

To improve the performance of electric machinery, it is necessary to obtain the optimal topology of a structure in magnetic fields. The homogenization design method is applied to obtain the optimal topology. In the method, the change of inner hole size and rotational angle of unit cell determines the optimal material distribution in a design domain and this distribution defines an optimal topology. The objective function is defined as maximizing magnetic mean compliance (MMC). This is the same a

Civil and Structural EngineeringEngineering
10
논문|인용수 28·2008
Optimal Design of an Electromagnetic Coupler to Maximize Force to a Specific Direction
Jeonghoon Yoo, S.-i. YANG, Jae Seok Choi
SJR Q2IEEE Transactions on Magnetics

This study suggests a concept design for an electromagnetic (EM) coupler, using the topology optimization method. To maximize the force generated by magnetic flux, the magnetic energy generated must be differentiable, at the location where the force is acting, in a prescribed force direction. This study proposes a topology optimization scheme for maximizing the force in a specific direction, using a commercial analysis program, ANSYS, to provide the force value. We use ANSYS for obtaining the re

Civil and Structural EngineeringEngineering
11
논문|인용수 23·2013
Topological nano-aperture configuration by structural optimization based on the phase field method
Heeseung Lim, Jeonghoon Yoo, Jae Seok Choi
SJR Q1Structural and Multidisciplinary Optimization
Civil and Structural EngineeringEngineering
12
논문|인용수 22·2010
Optimal design method for magnetization directions of a permanent magnet array
Jae Seok Choi, Jeonghoon Yoo
SJR Q2Journal of Magnetism and Magnetic Materials
Electrical and Electronic EngineeringEngineering
13
논문|인용수 18·2019
Structural design considering the uncertainty of load positions using the phase field design method
Seunghwan Jeong, Hong Kyoung Seong, Cheol Woong Kim, Jeonghoon Yoo
SJR Q1Finite Elements in Analysis and Design
Civil and Structural EngineeringEngineering
14
논문|인용수 18·2004
A modified density approach for topology optimization in magnetic fields
Jeonghoon Yoo, Hyeok-Soo Hong
SJR Q1International Journal of Solids and Structures
Civil and Structural EngineeringEngineering
15
논문|인용수 17·2019
Multiphase topology optimization with a single variable using the phase‐field design method
Hong Kyoung Seong, Cheol Woong Kim, Jeonghoon Yoo, Jaewook Lee
SJR Q1International Journal for Numerical Methods in Engineering

Summary In this study, a multimaterial topology optimization method using a single variable is proposed by combining the solid isotropic material with penalization method and the reaction‐diffusion equation. Unlike ordinary multimaterial optimization, which requires several variables depending on the number of material types, this method intends to represent various materials as one variable. The proposed method combines two special functions in the sensitivity analysis of the objective function

Civil and Structural EngineeringEngineering

대표 연구 분야

Civil and Structural EngineeringElectrical and Electronic EngineeringBiomedical EngineeringSurfaces, Coatings and FilmsElectronic, Optical and Magnetic MaterialsAerospace Engineering

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