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Hoon Sohn

Korea Advanced Institute of Science and Technology · 工学

研究室紹介

Professor Hoon Sohn's research lab specializes in structural health monitoring (SHM) with a focus on developing advanced signal processing and statistical pattern recognition techniques to detect and localize structural damage in civil and mechanical systems. The lab emphasizes data-driven approaches that distinguish between damage-induced changes and those caused by environmental or operational variations, using methods such as time series modeling, auto-regressive and ARX models, control charts, and wavelet-based analysis. A key research direction involves creating robust, real-time monitoring systems for composite and large-scale infrastructure using smart sensing and adaptive modeling. The lab also pioneers data normalization and feature extraction techniques to enhance the sensitivity and reliability of damage diagnosis under real-world conditions.

structural health monitoringvibration-based damage detectionsignal processingstatistical pattern recognitiondata normalization

Research Overview

Papers
403
Total Citations
18,456
Papers (5y)
71
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
71total
2021
2022
2023
2024
2025
Citations per year (5y)
1,657total
20212022202320242025

Selected Papers

15
1
Review|846 citations·2006
Effects of environmental and operational variability on structural health monitoring
Hoon Sohn
SJR Q1Philosophical Transactions of the Royal Society A Mathematical Physical and Engineering Sciences

Stated in its most basic form, the objective of structural health monitoring is to ascertain if damage is present or not based on measured dynamic or static characteristics of a system to be monitored. In reality, structures are subject to changing environmental and operational conditions that affect measured signals, and these ambient variations of the system can often mask subtle changes in the system's vibration signal caused by damage. Data normalization is a procedure to normalize datasets,

Civil and Structural EngineeringEngineering
2
Article|564 citations·2001
Damage diagnosis using time series analysis of vibration signals
Hoon Sohn, Charles R. Farrar
SJR Q1Smart Materials and Structures

A novel time series analysis is presented to locate damage sources in a mechanical system, which is running in various operational environments. The source of damage is located by solely analyzing the acceleration time histories recorded from a structure of interest. First, a data normalization procedure is proposed. This procedure selects a reference signal that is `closest' to a newly obtained signal from an ensemble of signals recorded when the structure is undamaged. Second, a two-stage pred

Civil and Structural EngineeringEngineering
3
Article|395 citations·2001
Structural Health Monitoring Using Statistical Pattern Recognition Techniques
Hoon Sohn, Charles R. Farrar, Norman Hunter, Keith Worden
SJR Q2Journal of Dynamic Systems Measurement and Control

This paper casts structural health monitoring in the context of a statistical pattern recognition paradigm. Two pattern recognition techniques based on time series analysis are applied to fiber optic strain gauge data obtained from two different structural conditions of a surface-effect fast patrol boat. The first technique is based on a two-stage time series analysis combining Auto-Regressive (AR) and Auto-Regressive with eXogenous inputs (ARX) prediction models. The second technique employs an

Civil and Structural EngineeringEngineering
4
Article|342 citations·2000
Structural Health Monitoring Using Statistical Process Control
Hoon Sohn, Jerry A. Czarnecki, Charles R. Farrar
SJR Q1Journal of Structural Engineering

This paper poses the process of structural health monitoring in the context of a statistical pattern recognition paradigm. This paper particularly focuses on applying a statistical process control (SPC) technique known as an “X-bar control chart” to vibration-based damage diagnosis. A control chart provides a statistical framework for monitoring future measurements and for identifying new data that are inconsistent with past data. First, an autoregressive (AR) model is fit to the measured time h

Civil and Structural EngineeringEngineering
5
Article|337 citations·1999
An experimental study of temperature effect on modal parameters of the Alamosa Canyon Bridge
Hoon Sohn, Mark Dzwonczyk, Erik G. Straser, Anne S. Kiremidjian, Kincho H. Law, Teresa H. Meng
SJR Q1Earthquake Engineering & Structural Dynamics

Damage detection techniques have been proposed to exploit changes in modal parameters and to identify the extent and location of damage in large structures. Most of such techniques, however, generally neglect the environmental effects on modal parameters. Such environmental effects include changes in loads, boundary conditions, temperature, and humidity. In fact, the changes due to environmental effects can often mask more subtle structural changes caused by damage. This paper examines a linear

Civil and Structural EngineeringEngineering
6
Article|315 citations·2007
Time reversal active sensing for health monitoring of a composite plate
Hyun Woo Park, Hoon Sohn, Kincho H. Law, Charles R. Farrar
SJR Q1Journal of Sound and Vibration
Mechanics of MaterialsEngineering
7
Article|299 citations·2003
Wavelet-based active sensing for delamination detection in composite structures
Hoon Sohn, Gyuhae Park, Jeannette R. Wait, Nathan P Limback, Charles R. Farrar
SJR Q1Smart Materials and Structures

In this paper a signal processing technique is developed to detect delamination on composite structures. In particular, a wavelet-based signal processing technique is developed and combined with an active sensing system to produce a near-real-time, online monitoring system for composite structures. A layer of piezoelectric patches is used to generate an input signal with a specific wavelet waveform and to measure response signals. Then, the response signals are processed by a wavelet transform t

Mechanics of MaterialsEngineering
8
Article|291 citations·2002
Statistical Damage Classification Under Changing Environmental and Operational Conditions
Hoon Sohn, Keith Worden, Charles R. Farrar
SJR Q2Journal of Intelligent Material Systems and Structures

Stated in its most basic form, the objective of damage diagnosis is to ascertain simply if damage is present or not based on measured dynamic characteristics of a system to be monitored. In reality, structures are subject to changing environmental and operational conditions that affect measured signals, and environmental and operational variations of the system can often mask subtle changes in the system’s vibration signal caused by damage. In this paper, a unique combination of time series anal

Civil and Structural EngineeringEngineering
9
Article|263 citations·2016
Automated dimensional quality assurance of full-scale precast concrete elements using laser scanning and BIM
Min-Koo Kim, Qian Wang, Joon-Woo Park, Jack C.P. Cheng, Hoon Sohn, C. C. Chang
SJR Q1Automation in Construction
GeologyEarth and Planetary Sciences
10
Article|255 citations·2014
A framework for dimensional and surface quality assessment of precast concrete elements using BIM and 3D laser scanning
Minkoo Kim, Jack C.P. Cheng, Hoon Sohn, C. C. Chang
SJR Q1Automation in Construction
GeologyEarth and Planetary Sciences
11
Article|215 citations·1997
A Bayesian probabilistic approach for structure damage detection
Hoon Sohn, Kincho H. Law
SJR Q1Earthquake Engineering & Structural Dynamics

A Bayesian probabilistic approach is presented for the damage detection of multistorey frame structures. In this paper, a Bayesian probabilistic approach is applied to identify multiple damage locations using estimated modal parameters when (1) the measurement data are potentially corrupted with noise, (2) only a small number of degrees of freedom are measured, and (3) a few fundamental modes are estimated. To reduce the potentially intensive computational cost of the proposed method, a branch-a

Civil and Structural EngineeringEngineering
12
Article|202 citations·2013
Nonlinear ultrasonic wave modulation for online fatigue crack detection
Hoon Sohn, Hyung Jin Lim, Martin P. DeSimio, Kevin Brown, Mark M. Derriso
SJR Q1Journal of Sound and Vibration
Mechanics of MaterialsEngineering
13
Article|188 citations·2009
Understanding a time reversal process in Lamb wave propagation
Hyun Woo Park, Seung Bum Kim, Hoon Sohn
SJR Q2Wave Motion
Mechanics of MaterialsEngineering
14
Article|185 citations·2013
Complete noncontact laser ultrasonic imaging for automated crack visualization in a plate
Yun‐Kyu An, Byeongjin Park, Hoon Sohn
SJR Q1Smart Materials and Structures

This paper presents an automated crack visualization technique using ultrasonic wavefield images obtained by a complete noncontact laser scanning system. First, the complete noncontact laser scanning system is built by integrating and synchronizing a Q-switched Nd:YAG laser for ultrasonic generation, a laser Doppler vibrometer for ultrasonic measurement and galvanometers for scanning. Then, four different laser scanning schemes are compared to find the most effective and practical ultrasonic sca

Mechanics of MaterialsEngineering
15
Article|176 citations·2011
Delamination detection in composites through guided wave field image processing
Hoon Sohn, Debaditya Dutta, Jin Yang, Hyun Jin Park, Martin P. DeSimio, Steven E. Olson, Eric Swenson
SJR Q1Composites Science and Technology
Mechanics of MaterialsEngineering

Research Areas

Mechanics of MaterialsCivil and Structural EngineeringMechanical EngineeringGeologyElectrical and Electronic EngineeringControl and Systems Engineering

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