Principal Investigator — 연구책임자

current

Physics-Based Virtual Sensing Methodology for Estimating Mooring Line Tension in Floating Offshore Wind Turbines

부유식 해상풍력 터빈 계류 시스템 장력 추정을 위한 물리 기반 가상 센싱 방법론 연구

Inha University New Faculty Research Grant, 2nd round · 2026/3 – 2027/2

This project develops Kalman-filter-based tension estimation from platform motion within a physics-based estimator framework.

completed

Machine Learning-Based Tension Prediction for FOWT Mooring Lines

기계학습 기반 부유식 풍력터빈 계류선 인장력 예측

Inha University New Faculty Research Grant, 1st round · 2025/3 – 2026/2

This project develops surrogate models that map platform response to mooring tension, providing a baseline against which to compare the physics-based estimators.

Co-Investigator — 참여연구자

current

High-Efficiency Propeller Design for Operation in Both Polar and General Waters

극지/일반해역에서 겸용 가능한 고효율 프로펠러 설계기술 개발

Korea Evaluation Institute of Industrial Technology · 2026/4 – 2026/12

This project develops high-efficiency propeller design technology suitable for operation across both polar and general-water conditions.

current

Analysis Model for Underwater Oxygen Supply in Marine Cages

해상가두리 수중산소 공급 분석 모델 개발

National Institute of Fisheries Science · 2026/4 – 2026/11

This project develops an analysis model for underwater oxygen supply in marine aquaculture cages, with classification-society application in view.

current

BEACON for Future Marine Workforce: Integrating Spatial and Resource Utilization

지속가능한 해양 신산업 인재 양성을 위한 해양공간·자원 활용 연구

Ministry of Oceans and Fisheries · 2025/4 – 2029/12

This multi-year project integrates research and education in marine spatial and resource utilization to develop talent for sustainable emerging ocean industries.

current

Professional Human Resources Training for Digital Shipyard

디지털조선소(DigitalShipYard)전문인력양성

Ministry of Trade, Industry and Energy (R&D) · 2026/3 – 2031/3

This multi-year programme develops specialist engineering talent for the digital transformation of shipyards.