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Abstract Ensuring the safe and efficient operation of ships requires a reliable performance evaluation. However, conducting such evaluations through field tests is often impractical due to high costs, time constraints, and environmental limitations. To address these challenges, SILS (Software-in-the-Loop Simulation) has emerged as an effective alternative. SILS is a simulation-based testing approach in which a system’s software components are evaluated within a virtual environment that replicates real-world conditions. It enables repeatable, cost-effective, and early-stage validation of system performance. This study proposes a method for ship modeling in a virtual environment for SILS-based collision avoidance simulation. To enhance the realism of the simulation, essential hardware characteristics of a ship—such as engine time delay and dynamic response—were incorporated into a virtual ship model, as they are critical for accurately representing the real-world behavior of the propulsion system. Furthermore, the hydrodynamic behavior of a ship was modeled using the equations of motion for a surface ship. By integrating both hardware and hydrodynamic dynamics, the modeling method of a virtual ship accurately reflects the actual performance of ship propulsion systems under realistic operating conditions. A virtual ship model generated from the proposed method was implemented within a SILS framework and applied to a range of collision avoidance scenarios involving various encounter conditions. Simulation results showed that the proposed method effectively replicated the dynamic responses of an actual ship and was capable of performing appropriate collision avoidance maneuvers. It could enable reliable and efficient evaluation of collision avoidance systems within a controlled and repeatable virtual environment. Moreover, it will be significantly able to reduce reliance on costly and limited field testing while maintaining a high level of realism and flexibility across a wide range of simulation scenarios.
Publication Date 2025-12-11
Ha-Yun Kim, Myung-Il Roh, Do-Hyeok Ahn, Min-Chul Kong, In-Chang Yeo, Seong-Won Choi, "A Method for Ship Modeling in a Virtual Environment for SILS-Based Collision Avoidance Simulation", Proceedings of the 11th PAAMES (Pan Asian Association of Maritime Engineering Societies) and AMEC (Advanced Maritime Engineering Conference) 2025, Singapore, 2025.12.10-12

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» International Conference Ha-Yun Kim, Myung-Il Roh, Do-Hyeok Ahn, Min-Chul Kong, In-Chang Yeo, Seong-Won Choi, "A Method for Ship Modeling in a Virtual Environment for SILS-Based Collision Avoidance Simulation", Proceedings of 11th PAAMES and AMEC, Singapore, 2025.12.10-12 file 2025-12-11
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561 Domestic Conference 한인수, 노명일, 공민철 "설계 문서 검색을 위한 생성형 AI 기반의 지능형 대화 시스템", 2025년도 함정기술무기체계 세미나, 부산, p. 331, 2025.05.28-29 file 2025-05-29
560 Domestic Conference 오승준, 노명일, 김진혁, "오프셋을 이용한 선형 메쉬 생성 방법", 2025년도 대한조선학회 춘계학술발표회, 부산, p. 308, 2025.05.08-05.10 file 2025-05-09
559 Domestic Conference 김윤식, 노명일, 김하연, 여인창, 손남선, "거친 환경에서 해상 장애물을 탐지하기 위한 개선된 방법", 2025년도 대한조선학회 춘계학술발표회, 부산, p. 138, 2025.05.08-05.10 file 2025-05-08
558 Domestic Conference 여인창, 노명일, 최성원, "다중 센서를 활용한 USV의 자동 접안 방법", 2025년도 대한조선학회 춘계학술발표회, 부산, p. 364, 2025.05.08-05.10 file 2025-05-09
557 Domestic Conference 김하연, 노명일, 안도혁, 공민철, 여인창, 최성원, "SILS (Software in the Loop Simulation)를 위한 선박 모델링 방법", 2025년도 대한조선학회 춘계학술발표회, 부산, p. 341, 2025.05.08-05.10 file 2025-05-09
556 Domestic Conference 한인수, 노명일, 공민철, 최성원, 장화섭, 조연화, 이갑헌, "도면 내 개정 사항 식별 방법", 2025년도 대한조선학회 춘계학술발표회, 부산, p. 96, 2025.05.08-05.10 file 2025-05-08
555 Domestic Conference 공민철, 노명일, 한인수, 최성원, "배관 라우팅을 위한 실적 데이터의 활용 방법", 2025년도 대한조선학회 춘계학술발표회, 부산, p. 293, 2025.05.08-05.10 file 2025-05-09
554 Domestic Conference 최성원, 노명일, 여인창, "심층 강화 학습 기반 개선된 선박의 충돌 회피 방법", 2025년도 대한조선학회 춘계학술발표회, 부산, p. 110, 2025.05.08-05.10 file 2025-05-08
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