• Title/Summary/Keyword: MMG 모델

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Prediction of Manoeuvrability using PMM Model Tests -Comparative Study of Mathematical Models- (PMM 모형시험에 의한 조종성능 추정 -수학모델에 따른 비교 연구-)

  • Lee, H.Y.;Yum, D.J.;Shin, S.S.;Lee, T.I.
    • Journal of the Society of Naval Architects of Korea
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    • v.34 no.2
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    • pp.48-55
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    • 1997
  • This paper is characterized as comparison with Abkowitz and MMG mathematical model for the manoeuvring prediction using the Horizontal Planar Motion Mechanism tests at the initial design stage. The MMG analysis algorithm of this paper was studied according to the developed method by the MMG(Mathematical Modelling Group) organized in Japen. The simulation results were compared with those of Abkowitz mathematical model and sea trial, taking a product carrier as an example vessel.

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Improvement of Prediction Technique of the Ship′s Manoeuvrability at Initial Design Stage (초기 설계단계에서 선박조종성능 추정에 대한 정도향상 연구)

  • Ho-Young Lee;Sang-Sung Shin;Deuk-Joon Yum
    • Journal of the Society of Naval Architects of Korea
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    • v.35 no.1
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    • pp.46-53
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    • 1998
  • In this paper, we studied to improve Inoue's[1] and Kijima's[2] model used to predict ship's manoeuvrability at initial design state. To perform this work, we carried out PMM(Planar motion Mechanism) test and rudder open water test for 12 models of low-speed blunt-ship which have horn type rudders and bulbs in afterbody. As we adopted MMG(Mathematical Modelling Group) model, we could analyze hydrodynamic and MMG experimental coefficients. The regression analyses by principle parameters were carried out for hydrodynamic and MMG experimental coefficients. The regression analyses by principle parameters were carried out for hydrodynamic and MMG experimental coefficients and the equations by regression analysis wee used to search sensitivities and to estimate ship's manoeuvrability. We had simulated ship's manoeuvrability to check revised MMG.

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랩탑(laptop) 기반의 도선사용 선박조종시뮬레이터 개발

  • Jeong, Tae-Gwon;Lee, Sin-Geol;Lee, Jeong-Jin;Jin, Cho;Heo, Yong-Beom
    • Proceedings of the Korean Institute of Navigation and Port Research Conference
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    • 2011.11a
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    • pp.99-101
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    • 2011
  • 접이안 조선은 도선사들의 필수 업무에 해당하는 것이며 이에 대한 안전성 확보는 무엇보다 중요하다. 새로운 항만의 개발, 새로운 선형 선박의 등장 등으로 도선사가 접이안 하는 항만은 계속 그리고 빠르게 변화하고 있다. 이런 변화에 능동적으로 대처하여 도선사 개개인의 선박조종 능력을 함양할 수 있는 방법의 하나로서 도선사들이 쉽게 어디서나 접할 수 있도록 랩탑(laptop) 기반의 선박조종 시뮬레이터를 개발하였다. 도선사들이 다루는 선박에서는 통상의 정속의 항행속력이 아닌 저속에서의 선박 조종이 주가 되므로 이에 대하여 특별히 고려하여 선박모델을 개발하였다. 선박 텔러그래프의 해당 속력 및 그 속력에 도달하는 시간 등이 실선에 부합할 수 있도록 하였다. 선박은 일본의 MMG 모델을 기반으로 하였으며 실제 선박의 시운전 데이터를 참고하여 개발하였다. 실선박이 가진 시운전 자료는 공선의 경우가 많으므로 이에 대하여서는 각 도선사들의 자문을 받아 수정 보완하였다.

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A Study on Estimation of the Course Keeping Ability of a Ship in Confined Waterways Using the MMG Model (MMG 모델을 이용한 제한수로를 운항하는 선박의 침로안정성능 추정에 관한 연구)

  • Kim, Hyunchul;Kim, In-Tae;Kim, Sanghyun;Kwon, Soo Yeon
    • Journal of Navigation and Port Research
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    • v.43 no.6
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    • pp.369-376
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    • 2019
  • Ship hydrodynamics in the confined waterways is challenging. When a ship is maneuvering in confined waterways, the hydrodynamic behavior may vary significantly because of the hydrodynamic interaction between the bottom of the ship hull and the seabed, or so-called shallow water effects. Thus, an accurate prediction of shallow water and bank effects is essential to minimizing the risk of the collision and the grounding of the ships. The hydrodynamic derivatives measured by the virtual captive model test provide a path to predicting the change in ship maneuverability. This paper presents a numerical simulation of captive model tests to predict the maneuverability of a ship in confined waterways. Also, straight and zig-zag simulation were conducted to predict the trajectory of a ship maneuvering in confined waterways. The results showed that the asymmetric flow around a ship induced by vicinity of banks causes pressure differences between the port and starboard sides and the trajectory of a ship maneuvering in confined waterways.

Development of Sailing Algorithm for Ship Group Navigation System (선박 그룹항해시스템의 항법 알고리즘 개발)

  • Wonjin, Choi;Seung-Hwan, Jun
    • Journal of Navigation and Port Research
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    • v.46 no.6
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    • pp.554-561
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    • 2022
  • Technology development related to maritime autonomous surface ships (MASS) is actively progressing around the world. However, since there are still many technically unresolved problems such as communication, cybersecurity, and emergency response capabilities, it is expected that it will take a lot of time for MASS to be commercialized. In this study, we proposed a ship group navigation system in which one leader ship and several follower ship are grouped into one group. In this system, when the leader ship begins to navigate, the follower ship autonomously follows the path of the leader ship. For path following, PD (proportional-derivative) control is applied. In addition, each ship navigates in a straight line shape while maintaining a safe distance to prevent collisions. Speed control was implemented to maintain a safe distance between ships. Simulations were performed to verify the ship group navigation system. The ship used in the simulation is the L-7 model of KVLCC2, which has related data disclosed. And the MMG (Maneuvering Modeling Group) standard method proposed by the Japan Society of Naval Architects and Ocean Engineering (JASNAOE) was used as a model of ship maneuvering motion. As a result of the simulation, the leader ship navigated along a predetermined route, and the follower ship navigated along the leader ship's path. During the simulation, it was found that the three ships maintained a straight line shape and a safe distance between them. The ship group navigation system is expected to be used as a navigation system to solve the problems of MASS.

A Study on the Influence of Mathematical Models of Manoeuvrability on the Simulation of Ship Berthing Operation (선박의 접안 시뮬레이션에서 조종수학모델의 영향에 관한 고찰)

  • Chung, Kwang Sic;Lee, Seung-Keon;Jeong, Jae-Hun
    • Proceedings of the Korean Institute of Navigation and Port Research Conference
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    • 2014.06a
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    • pp.15-16
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    • 2014
  • As trade cross the world is increasing these days, safe and effective management of harbour system is becoming important issue. With this background, the development of automatic time-domain simulation programme for ship berthing operation has been being peformed and PD (Proportional Derivative) controller has been used to control the speed and the heading angle of ships. This paper provides feasibility study for developing the time-domain simulation programme for berthing operation of ships with analysing advantages and drawbacks of the two different mathematical models, one is for low advance speed of ships by Kose (1984) and the other is MMG model for normal advance speed, through the simulations with various initial heading angles and positions of the ship.

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A Study on the Automatic Control for Collision Avoidance of the Ships (선박의 충돌회피를 위한 자동제어에 관한 기초적 연구)

  • Lee, Seung-Keon;Kwon, Bae-Jun
    • Journal of Navigation and Port Research
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    • v.26 no.1
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    • pp.8-14
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    • 2002
  • The collisions of vessel at sea show high among the whole marine accidents. Especially, the accidents of fishing vessels take the largest portion of the collisions. Therefore, a technique to reduce these accidents should be developed. The automatic control for avoiding collision suggested in this study consists of two steps. The first is recognizing collision risk with fuzzy Theory and the other is maneuvering the model ship on the basis of collision risk calculated from the first step. The information form the position and estimated time of collision point(DCPA and TCPA) is used to assess the collision risk. To verify this system, a fishing vessel was simulated according to MMG mathematical model. The simulations result shows quite good application in avoiding the collision of ship.

유지선박의 충돌회피협력 동작 시점에 대한 연구

  • 이희진;박득진
    • Proceedings of the Korean Institute of Navigation and Port Research Conference
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    • 2022.11a
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    • pp.76-77
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    • 2022
  • COLREGS의 규칙 17에는 피항선박만의 충돌회피동작으로 충돌을 피할 수 없을때 유지선박은 충돌을 피하기 위한 협력 행동을 취해야 한다고 명시되어 있다. 이 연구에서는 두 선박 간 충돌 시 각도별 거리(CDC)를 통해서 유지선박이 언제 충돌회피 협력 동작을 취해야 하는 시점을 제시하였다. 두 선박 간 충돌평가는 다양한 시나리오에 기반한 시뮬레이션을 통해 수행되었고, 시뮬레이션은 MMG 모델에 의해 설계되었다.

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Numerical Study on Towing Stability of LNG Bunkering Barge in Calm Water (LNG 벙커링 바지의 정수 중 예인안정성에 관한 수치연구)

  • Oh, Seunghoon;Jung, Dongho;Jung, Jae-Hwan;Hwang, Sung-Chul;Cho, Seok-kyu;Sung, Hong Gun
    • Proceedings of the Korean Institute of Navigation and Port Research Conference
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    • 2019.05a
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    • pp.185-188
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    • 2019
  • In this paper, the towing stability of the LNG bunker barge is estimated. Currently, LNG bunkering barge is being developed as an infrastructure for the bunkering of LNG (Liquefied Natural Gas), an eco-friendly energy source. Since the LNG bunker barge are in the form of towed ship connected to the tow line, the towing stability of the LNG bunker barge is very important for the safety of not only the LNG bunker barge but also the surrounding sailing vessels. The numerical code for towing simulation was developed to estimate the towing stability of the LNG bunker barge at the initial design stage. The MMG(Manoeuvring Mathematical Group) model was applied to the equations of motion and the empirical formula was applied to the maneuvering coefficients so that they could be used in the initial design stage. To validity of the developed numerical code, it was compared with published calculation and model test results. Towing simulations were carried out according to with and without stern skeg of the LNG bunker barge using the developed numerical code. Through the results of the simulations, the appropriateness of the stern skeg area designed was confirmed.

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Study on Improving the Navigational Safety Evaluation Methodology based on Autonomous Operation Technology (자율운항기술 기반의 선박 통항 안전성 평가 방법론 개선 연구)

  • Jun-Mo Park
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.30 no.1
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    • pp.74-81
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    • 2024
  • In the near future, autonomous ships, ships controlled by shore remote control centers, and ships operated by navigators will coexist and operate the sea together. In the advent of this situation, a method is required to evaluate the safety of the maritime traffic environment. Therefore, in this study, a plan to evaluate the safety of navigation through ship control simulation was proposed in a maritime environment, where ships directly controlled by navigators and autonomous ships coexisted, using autonomous operation technology. Own ship was designed to have autonomous operational functions by learning the MMG model based on the six-DOF motion with the PPO algorithm, an in-depth reinforcement learning technique. The target ship constructed maritime traffic modeling data based on the maritime traffic data of the sea area to be evaluated and designed autonomous operational functions to be implemented in a simulation space. A numerical model was established by collecting date on tide, wave, current, and wind from the maritime meteorological database. A maritime meteorology model was created based on this and designed to reproduce maritime meteorology on the simulator. Finally, the safety evaluation proposed a system that enabled the risk of collision through vessel traffic flow simulation in ship control simulation while maintaining the existing evaluation method.