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Myungjun Jeon,Thi Loan Mai,Hyeon Kyu Yoon,Jaekwan Ryu,Wonhee Lee,Pyungmo Ku 한국해양공학회 2021 韓國海洋工學會誌 Vol.35 No.5
A submerged body with varied control inputs can execute large drift angles and large angles of attack, as well as basic control such as straight movement and turning. The objective of this study is to analyze the dynamic characteristics of a submerged body comprising six thrusters and six control planes, which is capable of a large drift angle and angle of attack motion. Virtual captive model tests via were analyzed via computational fluid dynamics (CFD) to determine the dynamic characteristics of the submerged body. A test matrix of virtual captive model tests specialized for large-angle motion was established. Based on this test matrix, virtual captive model tests were performed with a drift angle and angle of attack of approximately 30° and 90°, respectively. The characteristics of the hydrodynamic force acting on the horizontal and vertical surfaces of the submerged body were analyzed under the large-angle motion condition, and a model representing this hydrodynamic force was established. In addition, maneuvering simulation was performed to evaluate the standard maneuverability and dynamic characteristics of large-angle motion. Considering the shape characteristics of the submerged body, we attempt to verify the feasibility of the analysis results by analyzing the characteristics of the hydrodynamic force when the large-angle motion occurred.
Myungjun Jeon,윤현규,Junho Hwang,Hyeon Jin Cho 대한조선학회 2018 International Journal of Naval Architecture and Oc Vol.10 No.4
In order to design the hull form of an underwater vehicle in the conceptual design phase, the dynamic characteristics depending on the hull form parameters should be identified. Course-keeping stability, turning ability, yaw-checking ability, and mission competence are set to be the indices of the dynamic characteristics, and the geometric parameters for the bare hull and rudder are set to be the hull form design parameters. The total sensitivity of the dynamic characteristics with respect to the hull form parameters is calculated by the chain rule of the partial sensitivity of the dynamic characteristics with respect to the hydrodynamic coefficients, and the partial sensitivity of the hydrodynamic coefficients with respect to the hull form parameters. Based on the sensitivity analysis, important hull form parameters are selected, and those optimal values to satisfy the required intercept time of mission competence of a specific underwater vehicle and turning rate are estimated.
Jeon, Myungjun,Yoon, Hyeon Kyu,Hwang, Junho,Cho, Hyeon Jin The Society of Naval Architects of Korea 2018 International Journal of Naval Architecture and Oc Vol.10 No.4
In order to design the hull form of an underwater vehicle in the conceptual design phase, the dynamic characteristics depending on the hull form parameters should be identified. Course-keeping stability, turning ability, yaw-checking ability, and mission competence are set to be the indices of the dynamic characteristics, and the geometric parameters for the bare hull and rudder are set to be the hull form design parameters. The total sensitivity of the dynamic characteristics with respect to the hull form parameters is calculated by the chain rule of the partial sensitivity of the dynamic characteristics with respect to the hydrodynamic coefficients, and the partial sensitivity of the hydrodynamic coefficients with respect to the hull form parameters. Based on the sensitivity analysis, important hull form parameters are selected, and those optimal values to satisfy the required intercept time of mission competence of a specific underwater vehicle and turning rate are estimated.
요소항력모델을 활용한 선저검사용 ROV 모델링 및 트래킹 시뮬레이션
전명준(MyungJun Jeon),이동현(DongHyun Lee),윤현규(Hyeon Kyu Yoon),구본국(Bonguk Koo) 한국해양공학회 2016 韓國海洋工學會誌 Vol.30 No.5
The large drift and angle of attack motion of an ROV (Remotely operated vehicle) cannot be modeled using the typical hydrodynamic coefficients of conventional straight running AUVs and specific slender bodies. In this paper, the ROV hull is divided into several simple-shaped components to model the hydrodynamic force and moment. The hydrodynamic force and moment acting on each component are modeled as the components of added mass force and drag using the known values for simple shapes such as a cylinder and flat plate. Since an ROV is operated under the water, the only environmental force considered is the current effect. The target ROV dealt with in this paper has six thrusters, and it is assumed that its maneuvering motion is determined using a thrust allocation algorithm. Tracking simulations are carried out on the ship’s surface near the stern, bow, and midship sections based on the modeling of the hydrodynamic force and current effect.
전명준(MyungJun Jeon),윤현규(Hyeon Kyu Yoon),황준호(Junho Hwang),조현진(Hyeon Jin Cho) 한국해양공학회 2017 韓國海洋工學會誌 Vol.31 No.2
Submerged bodies moving underwater behave differently based on their type and assigned mission. This paper describes the dynamic characteristics, including the stability, turning ability, and operational ability, of submerged bodies in relation to design parameters such as the tail cone angle, shape of the control plate, and length of the parallel middle body. A submerged body operated in other countries is adopted as a reference for the dynamic characteristics, its principal dimensions and the shape of the bare hull and appendages are used for comparison. This paper suggests a few candidate hull forms based on changes in the typical design parameters. Finally, the dynamic characteristics for these candidate hull forms are defined.
전술 모바일 애드 혹 네트워크를 위한 위치 기반의 신뢰성 제공을 위한 라우팅 방법
윤명준(Myungjune Youn),강태훈(Tae Hun Kang),전한얼(HahnEarl Jeon),이재용(Jaiyong Lee) 한국통신학회 2012 韓國通信學會論文誌 Vol.37 No.11(융합기술)
최근 정보통신 산업 및 네트워크 분야의 기술발달로 국방 무기체계에 새로운 패러다임 변화가 형성되었고, 군에서도 이러한 전쟁양상에 변화에 맞추어 TICN(Tactical Information Communication Network)이라는 통신체계를 도입하여 구축 중에 있다. TICN체계가 그 기능을 갖추기 위해서는 전장의 소규모 전투로부터 신뢰성 있는 정보를 실시간으로 전송 받아야 하는데, 이러한 기능을 지원해 주는 기술의 핵심적인 요소가 바로 MANET(Mobile Ad-Hoc Network) 라우팅 프로토콜이다. 본 논문에서는 일반 MANET 라우팅 프로토콜에서 주로 사용되는 최단경로 설정 기법의 전술네트워크 적용에 따른 문제점을 식별하고, 소규모 전투부대의 전술환경을 바탕으로, 중계 노드들의 위치와 속도, 데이터 크기 등을 고려하여 경로의 신뢰성과 데이터 지연 시간을 계산함으로써, 신뢰성 있는 정보를 실시간으로 전송 받을 수 있는 효율적인 전술 MANET 라우팅 프로토콜을 제안해 보고자 한다. Recently, developments in the field of communication and network technologies induced new paradigm in the defense weapon system. As a consequence, military authorities develop the Tactical Information Communication Network(TICN) system to adapt to the changing paradigm. One of the most important functions of TICN is real-time communication. As a result, TICN system needs to receive real-time information from the battlefield, and the key technology to support these features is MANET(Mobile Ad-Hoc Network) routing protocol. In this paper, we analyze problems of the shortest path scheme in tactical Ad-Hoc networks, which is widely used in common Ad-Hoc networks. We propose efficient routing protocol for tactical MANET by considering the environment of small combat units, such as node position, speed and data size. The proposed algorithm shows reliable data transfer and low latency in battlefield.
Lee, DongHyun,Jeon, MyungJun,Nguyen, Van Minh,Yoon, Hyeon Kyu Korean Society of Ocean Engineers 2016 Journal of advanced research in ocean engineering Vol.2 No.3
Green water impact occurs frequently on offshore platform due to waves with a height greater relative to the freeboard of the structure. This phenomenon exerts a large impact load on the deck. In this paper, offshore platform models with green water protectors of various shapes were fixed to the center of a 3D wave tank to measure the impact pressure acting on the various points on deck and protectors. The impact pressure distribution differed depending on the protector shape, and various patterns of wave creeping up the protector were observed. The protector shape that exerted the lowest pressure impact on the deck will be useful in the deck design of offshore platform, and the model test results will be expected to be used for designers to select the best protector form.