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Cho, Soojin (조수진)

Department
School of Urban and Environmental Engineering(도시환경공학부)
Research Interests
civil engineering, wireless sensor, system identification, modal analysis
Lab
Smart Infrastructure and Systems Laboratory
E-Mail
soojin@unist.ac.kr
Website
http://simsunghan.weebly.com/
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Issue DateTitleAuthor(s)TypeViewAltmetrics
201603Victim Localization and Assessment System for Emergency RespondersYoon, Hyungchul; Shiftehfar, Reza; Cho, Soojin, et alARTICLE171 Victim Localization and Assessment System for Emergency Responders
201601Concrete Crack Assessment Using Digital Image Processing and 3D Scene ReconstructionLiu, Yu-Fei; Cho, Soojin; Spencer, B. F., Jr., et alARTICLE194 Concrete Crack Assessment Using Digital Image Processing and 3D Scene Reconstruction
201511Sensor Attitude Correction of Wireless Sensor Network for Acceleration-Based Monitoring of Civil StructuresCho, Soojin; Spencer, Billie F. Jr.ARTICLE251 Sensor Attitude Correction of Wireless Sensor Network for Acceleration-Based Monitoring of Civil Structures
201510Dynamic Assessment of Timber Railroad Bridges Using DisplacementsMoreu, F.; Jo, H.; Li, J., et alARTICLE204 Dynamic Assessment of Timber Railroad Bridges Using Displacements
201510Adaptive reference updating for vibration-based structural health monitoring under varying environmental conditionsJin, Seung-Seop; Cho, Soojin; Jung, Hyung-JoARTICLE404 Adaptive reference updating for vibration-based structural health monitoring under varying environmental conditions
201505A Recent Research Summary on Smart Sensors for Structural Health MonitoringKim, Eun-Jin; Cho, Soojin; Sim, Sung-HanARTICLE113 A Recent Research Summary on Smart Sensors for Structural Health Monitoring
201504Decentralized system identification using stochastic subspace identification for wireless sensor networksCho, Soojin; Park, Jong-Woong; Sim, Sung-HanARTICLE302 Decentralized system identification using stochastic subspace identification for wireless sensor networks
201503Displacement estimation of bridge structures using data fusion of acceleration and strain measurement incorporating finite element modelCho, Soojin; Yun, Chung Bang; Sim, Sung-HanARTICLE543 Displacement estimation of bridge structures using data fusion of acceleration and strain measurement incorporating finite element model
201502System identification of a historic swing truss bridge using a wireless sensor network employing orientation correctionCho, Soojin; Giles, Ryan K.; Spencer, Billie F.ARTICLE327 System identification of a historic swing truss bridge using a wireless sensor network employing orientation correction
201502Experimental validation of Kalman filter-based strain estimation in structures subjected to non-zero mean inputPalanisamy, Rajendra P.; Cho, Soojin; Kim, Hyunjun, et alARTICLE347 Experimental validation of Kalman filter-based strain estimation in structures subjected to non-zero mean input
2015Finite Element Model Updating Based on Data Fusion of Acceleration and Angular VelocityKim, Hyun-Jun; Cho, Soojin; Sim, Sung-HanARTICLE125 Finite Element Model Updating Based on Data Fusion of Acceleration and Angular Velocity
201410Extension of indirect displacement estimation method using acceleration and strain to various types of beam structuresCho, Soojin; Sim, Sung-Han; Park J.-W., et alARTICLE344 Extension of indirect displacement estimation method using acceleration and strain to various types of beam structures
201410Automated assessment of cracks on concrete surfaces using adaptive digital image processingLiu, Yufei; Cho, Soojin; Spencer, Billie F., et alARTICLE461 Automated assessment of cracks on concrete surfaces using adaptive digital image processing
201409영상 기반 변위 계측장치의 현장 적용 성능 평가Sim, Sung-Han; Cho, Soojin; Kim, EunsungARTICLE441 영상 기반 변위 계측장치의 현장 적용 성능 평가
201404진동법을 이용한 사장교의 시공 중 장력 평가Sim, Sung-Han; Cho, Soojin; Yun, Chung BangARTICLE585 진동법을 이용한 사장교의 시공 중 장력 평가
2014Vision-Based Displacement Measurement System Operable at Arbitrary PositionsLee, Jun-Hwa; Cho, Soojin; Sim, Sung-HanARTICLE156 Vision-Based Displacement Measurement System Operable at Arbitrary Positions

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