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Yong‐Hwa Park

Korea Advanced Institute of Science and Technology · Engineering

About the Lab

Professor Yong-Hwa Park's research lab specializes in interdisciplinary engineering and biomedical systems, focusing on condition monitoring of rotating machinery, fault diagnosis in electric motors, and the development of advanced sensing and signal processing techniques. The lab also explores energy-efficient bioproduction systems using structured mycelial cultures and applies deep learning to acoustic signal analysis for healthcare applications, such as remote cough detection in pandemic monitoring. Their work bridges mechanical systems, mechatronics, and artificial intelligence to solve real-world challenges in industrial reliability and public health.

fault diagnosisvibration analysisdeep learningbioproductionacoustic signal processing

Research Overview

Papers
240
Total Citations
1,944
Papers (5y)
121
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
121total
2022
2023
2024
2025
2026
Citations per year (5y)
733total
20222023202420252026

Selected Papers

15
1
Article|153 citations·2023
Vibration, acoustic, temperature, and motor current dataset of rotating machine under varying operating conditions for fault diagnosis
Wonho Jung, Seong-Hu Kim, Sung-Hyun Yun, Jaewoong Bae, Yong‐Hwa Park
SJR Q3Data in BriefOA

Rotating machines are often operated under various operating conditions. However, the characteristics of the data varies with their operating conditions. This article presents the time-series dataset, including vibration, acoustic, temperature, and driving current data of rotating machines under varying operating conditions. The dataset was acquired using four ceramic shear ICP based accelerometers, one microphone, two thermocouples, and three current transformer (CT) based on the international

Control and Systems EngineeringEngineering
2
Article|77 citations·2004
High-Fidelity Modeling of MEMS Resonators—Part I: Anchor Loss Mechanisms Through Substrate
Yong‐Hwa Park, K. C. Park
SJR Q2Journal of Microelectromechanical Systems

A computational model is developed for the prediction of wave propagation in the substrate of a MEMS resonator to study energy loss mechanisms from the vibrating beams to the substrate, viz., anchor loss. The model employs a modified classical Fourier transform method under periodic excitations at the anchor area. The present substrate model, when applied to a typical commercially fabricated substrate, estimates that the anchor loss of an ends-anchored resonator with its center frequency of 50 M

Electrical and Electronic EngineeringEngineering
3
Article|45 citations·2023
Vibration and current dataset of three-phase permanent magnet synchronous motors with stator faults
Wonho Jung, Sung-Hyun Yun, Yoon-Seop Lim, Sungjin Cheong, Yong‐Hwa Park
SJR Q3Data in BriefOA

Permanent magnet synchronous motors (PMSM) are widely used in industry applications such as home appliances, manufacturing process, high-speed trains, and electric vehicles. Unexpected faults of PMSM are directly related to the significant losses in the engineered systems. The majority of motor faults are bearing fault (mechanical) and stator fault (electrical). This article reports vibration and driving current dataset of three-phase PMSM with three different motor powers under eight different

Control and Systems EngineeringEngineering
4
Article|36 citations·2022
Exploring economic feasibility for airport shuttle service of urban air mobility (UAM)
Jong Hae Choi, Yong‐Hwa Park
SJR Q1Transportation Research Part A Policy and Practice
General Economics, Econometrics and FinanceEconomics, Econometrics and Finance
5
Article|35 citations·2000
STRUCTURAL MODIFICATION BASED ON MEASURED FREQUENCY RESPONSE FUNCTIONS: AN EXACT EIGENPROPERTIES REALLOCATION
Yong‐Hwa Park, Y.-s. PARK
SJR Q1Journal of Sound and Vibration
Civil and Structural EngineeringEngineering
6
Article|32 citations·1986
Production of penicillin in a fluidized‐bed bioreactor using a carrier‐supported mycelial growth
J. H. Kim, Deok‐Kun Oh, S. K. Park, Yong‐Hwa Park, David A. Wallis
SJR Q2Biotechnology and Bioengineering

A carrier-supported mycelial growth of Penicillium chrysogenum was applied to penicillin fermentation system using celite as a support material. Hyphal growth through the pore matrices of the material showed strong anchorages and provided highly stable biofilm growth. With bioparticles developed in such a manner, both cell growth and penicillin production were observed to increase significantly compared to the conventional dispersed filamentous cultures. Maximum values of specific penicillin pro

PharmacologyMedicine
7
Article|31 citations·2022
Deep learning based cough detection camera using enhanced features
Gyeong-Tae Lee, Hyeonuk Nam, Seong-Hu Kim, Sangmin Choi, Youngkey Kim, Yong‐Hwa Park
SJR Q1Expert Systems with ApplicationsOA

Coughing is a typical symptom of COVID-19. To detect and localize coughing sounds remotely, a convolutional neural network (CNN) based deep learning model was developed in this work and integrated with a sound camera for the visualization of the cough sounds. The cough detection model is a binary classifier of which the input is a two second acoustic feature and the output is one of two inferences (<i>Cough</i> or <i>Others</i>). Data augmentation was performed on the collected audio files to al

Pulmonary and Respiratory MedicineMedicine
8
Article|29 citations·2000
STRUCTURE OPTIMIZATION TO ENHANCE ITS NATURAL FREQUENCIES BASED ON MEASURED FREQUENCY RESPONSE FUNCTIONS
Yong‐Hwa Park, Youn-sik Park
SJR Q1Journal of Sound and Vibration
Civil and Structural EngineeringEngineering
9
Article|28 citations·2024
A Comprehensive Review: Robot-Assisted Treatments for Gait Rehabilitation in Stroke Patients
Yong‐Hwa Park, Dae-Hwan Lee, Jung-Ho Lee
SJR Q2MedicinaOA

Robot-assisted gait training (RAGT) is at the cutting edge of stroke rehabilitation, offering a groundbreaking method to improve motor recovery and enhance the quality of life for stroke survivors. This review investigates the effectiveness and application of various RAGT systems, including both end-effector and exoskeleton robots, in facilitating gait enhancements. The selection process for this comprehensive analysis involved a meticulous review of the literature from databases such as PubMed,

RehabilitationMedicine
10
Article|28 citations·2004
High-Fidelity Modeling of MEMS Resonators—Part II: Coupled Beam-Substrate Dynamics and Validation
Yong‐Hwa Park, K. C. Park
SJR Q2Journal of Microelectromechanical Systems

A computational multiphysics model of the coupled beam-substrate-electrostatic actuation dynamics of MEMS resonators has been developed for the model-based prediction of Q-factor and design sensitivity studies of the clamped vibrating beam. The substrate and resonator beam are modeled independently and then integrated by enforcing their interface compatibility condition and the force equilibrium to arrive at the multiphysics model. The present model has been validated with several reported singl

Electrical and Electronic EngineeringEngineering
11
Article|28 citations·2022
A proper generalized decomposition-based harmonic balance method with arc-length continuation for nonlinear frequency response analysis
Gil‐Yong Lee, Yong‐Hwa Park
SJR Q1Computers & Structures
Civil and Structural EngineeringEngineering
12
Article|26 citations·2023
Reproduction of human blood pressure waveform using physiology-based cardiovascular simulator
Jae‐Hak Jeong, Bo-Mi Lee, Junki Hong, Tae‐Heon Yang, Yong‐Hwa Park
SJR Q1Scientific ReportsOA

This study presents a cardiovascular simulator that mimics the human cardiovascular system's physiological structure and properties to reproduce the human blood pressure waveform. Systolic, diastolic blood pressures, and its waveform are key indicators of cardiovascular health. The blood pressure waveform is closely related to the pulse wave velocity and the overlap of the forward and reflected pressure waves. The presented cardiovascular simulator includes an artificial aorta made of biomimetic

Cardiology and Cardiovascular MedicineMedicine
13
Article|23 citations·2020
Design and Evaluation of Enhanced Mock Circulatory Platform Simulating Cardiovascular Physiology for Medical Palpation Training
Jae‐Hak Jeong, Young-Min Kim, Bo-Mi Lee, Junki Hong, Jaeuk U. Kim, Sam-Yong Woo, Tae‐Heon Yang, Yong‐Hwa Park
SJR Q2Applied SciencesOA

This study presents a design and evaluation of a mock circulatory platform, which can reproduce blood pressure and its waveforms to provide palpation experience based on the human cardiovascular physiology. To reproduce the human cardiovascular behavior, especially the blood pressure, the proposed platform includes three major modules: heart, artery and reservoir modules. The heart module reproduces source pressure exerted on the whole system with a controlled time-profile. The artery module con

Biomedical EngineeringEngineering
14
Article|23 citations·2013
Three-dimensional imaging using fast micromachined electro-absorptive shutter
Yong‐Hwa Park, Yong-Chul Cho, Jang-Woo You, Chang-Young Park, Hee-Sun Yoon, Sanghun Lee, Jongoh Kwon, Seung-Wan Lee, Byung Hoon Na, Gun Wu Ju, Hee Ju Choi, Yong Tak Lee
Journal of Micro/Nanolithography MEMS and MOEMSOA

A 20-MHz switching high-speed light-modulating device for three-dimensional (3-D) image capturing and its system prototype are presented. For 3-D image capturing, the system utilizes a time-of-flight (TOF) principle by means of a 20-MHz high-speed micromachined electro-absorptive modulator, the so-called optical shutter. The high-speed modulation is obtained by utilizing the electro-absorption mechanism of the multilayer structure, which has an optical resonance cavity and light-absorption epila

InstrumentationPhysics and Astronomy
15
Article|17 citations·2022
Highly precise AMCW time-of-flight scanning sensor based on parallel-phase demodulation
Sung‐Hyun Lee, Wook-Hyeon Kwon, Yoon-Seop Lim, Yong‐Hwa Park
SJR Q1Measurement
InstrumentationPhysics and Astronomy

Research Areas

Electrical and Electronic EngineeringInstrumentationSignal ProcessingControl and Systems EngineeringCivil and Structural EngineeringCardiology and Cardiovascular Medicine

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