• 제목/요약/키워드: Vessel Traffic System

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AIS 및 전자해도 기반 해상교통량 분석 시스템 개발에 관한 연구 (A Study on the Development of the Marine Traffic Analysis System Based on AIS and ENC)

  • 김대희;송재욱;정민
    • 한국항해항만학회지
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    • 제31권1호
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    • pp.43-48
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    • 2007
  • 해상교통량 조사 분석은 안전하고 원활한 항로 항만의 설계와 제반시설의 개선 및 항행관리를 위하여 반드시 필요한 수단이다. 해상교통량 조사 분석과정에서 정확한 조사방법을 통해 선박통항에 관한 데이터들을 수집하여야 하고, 수집된 선박교통량에 관한 다양한 정보는 정확하고 과학적으로 분석되어야 한다. 이 논문에서는, 해상교통량 조사과정에 있어 인력에 의해 일어날 수 있는 오차를 보완할 수 있으며, 정확한 조사의 실행 및 분석결과를 출력할 수 있는 시스템을 연구 제작함을 목표로 한다. AIS 및 전자해도를 기반으로 하여 정확하고 신속하게 선박교통정보를 수집하여 조사분석자의 수고를 경감시켜줄 수 있으며 표준화된 분석결과를 제시해줄 수 있는 해상교통량 분석 시스템을 제안하고 그 개발 내용을 소개하고자 한다.

A Study on the Development the Maritime Safety Assessment Model in Korea Waterway

  • Park, Young-Soo;Kim, Jong-Sung;Aydogdu, Volkan
    • 한국항해항만학회지
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    • 제37권6호
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    • pp.567-574
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    • 2013
  • Although Korea coastal area has the increasing potential marine accident due to frequent ship's encounter, increased vessel traffic and large vessel, there is no specific model to evaluate the navigating vessel's risk considering the domestic traffic situation. The maritime transport environmental assessment is necessary due to the amended maritime traffic law. However, marine safety diagnosis is now carried out by foreign model. In this paper, therefore, we suggest a domestic traffic model reflecting the characteristics of korea coastal area and navigator's risk as we named PARK(Potential Assessment of Risk) model. We can evaluate the subjective risk by establishing the model and model output into maritime risk exposure system. To evaluate this model's effectiveness, we used ship handling simulation and applied, analyzed collision accident which occurred in korea coastal area. And also, we applied integrated to an ECDIS program for monitoring traffic risk of vessels with real time based AIS data and apply to evaluate traffic risk in busan harbor waterway. As a result, we could evaluate busan harbor waterway risk effectively.

Pattern Recognition of Ship Navigational Data Using Support Vector Machine

  • Kim, Joo-Sung;Jeong, Jung Sik
    • International Journal of Fuzzy Logic and Intelligent Systems
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    • 제15권4호
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    • pp.268-276
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    • 2015
  • A ship's sailing route or plan is determined by the master as the decision maker of the vessel, and depends on the characteristics of the navigational environment and the conditions of the ship. The trajectory, which appears as a result of the ship's navigation, is monitored and stored by a Vessel Traffic Service center, and is used for an analysis of the ship's navigational pattern and risk assessment within a particular area. However, such an analysis is performed in the same manner, despite the different navigational environments between coastal areas and the harbor limits. The navigational environment within the harbor limits changes rapidly owing to construction of the port facilities, dredging operations, and so on. In this study, a support vector machine was used for processing and modeling the trajectory data. A K-fold cross-validation and a grid search were used for selecting the optimal parameters. A complicated traffic route similar to the circumstances of the harbor limits was constructed for a validation of the model. A group of vessels was composed, each vessel of which was given various speed and course changes along a specified route. As a result of the machine learning, the optimal route and voyage data model were obtained. Finally, the model was presented to Vessel Traffic Service operators to detect any anomalous vessel behaviors. Using the proposed data modeling method, we intend to support the decision-making of Vessel Traffic Service operators in terms of navigational patterns and their characteristics.

Merging of Satellite Remote Sensing and Environmental Stress Model for Ensuring Marine Safety

  • Yang, Chan-Su;Park, Young-Soo
    • 한국항해항만학회지
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    • 제27권6호
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    • pp.645-652
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    • 2003
  • A virtual vessel traffic control system is introduced to contribute to prevent a marine accident such as collision and stranding from happening. Existing VTS has its limit. The virtual vessel traffic control system consists of both data acquisition by satellite remote sensing and a simulation of traffic environment stress based on the satellite data, remotely sensed data And it could be used to provide timely and detailed information about the marine safety, including the location, speed and direction of ships, and help us operate vessels safely and efficiently. If environmental stress values are simulated for the ship information derived from satellite data, proper actions can be taken to prevent accidents. Since optical sensor has a high spatial resolution, JERS satellite data are used to track ships and extract their information. We present an algorithm of automatic identification of ship size and velocity. It lastly is shown that based on ship information extracted from JERS data, a qualitative evaluation method of environmental stress is introduced.

A Study on Minimum Number of Ship-handling Simulation Required for Evaluating Vessel's Proximity Measure

  • Jeong, Tae-Gweon;Pan, Bao-Feng
    • 한국항해항만학회지
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    • 제38권6호
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    • pp.689-694
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    • 2014
  • The Korean government has introduced and enforced maritime traffic safety assessment to secure traffic safety since 2010. The maritime traffic safety assessment is needed by law to design a new port or modify an existing one. According to Korea Maritime Safety Act, in the assessment the propriety of marine traffic system consists of the safety of channel transit and berthing/unberthing maneuver, safety of mooring, and safety of marine traffic flow. The safety of channel transit and berthing/unberthing maneuver can be evaluated only by ship-handling simulation. The ship-handling simulation is carried out by sea pilots working with the port concerned. The vessel's proximity measure is an important factor to evaluate traffic safety. The proximity measure is composed of vessel's closest distance to channel boundary and probability of grounding/collision. What is more, the probability of grounding becomes important. According to central limit theorem, a sample has a normal distribution on condition that its size is more than 30. However, more than 30 simulation runs bring about the increase of assessment period and difficulty of employing sea pilots. Therefore this paper is to find out minimum sample size for evaluating vessel's proximity. First sample sets of size of 3, 5, 7, 9 etc. are selected randomly on the basis of normal distribution. And then KS test for goodness of fit and t-test for confidence interval are applied to each sample set. Finally this paper decides the minimum sample size. As a result this paper suggests the minimum sample size of 5, that is, the simulation of more than five times.

인공위성 원격탐사의 활용: 선박 감시 기법 (Space-based Ocean Surveillance and Support Capability: with a Focus on Marine Safety and Security)

  • 양찬수
    • 해양환경안전학회:학술대회논문집
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    • 해양환경안전학회 2006년도 춘계학술발표회
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    • pp.41-45
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    • 2006
  • From the 1978 Seasat synthetic aperture radar(SAR) to present systems, spaceborne SAR has demonstrated the capability to image the Earth's ocean and land features over broad areas, day and night, and under most weather conditions. The application of SAR for surveillance of commercial fishing grounds can did in the detection of illegal fishing activities and provides more efficient use cf limited aircraft or patron craft resources. In the area of vessel traffic monitoring for commercial vessels, Vessel Traffic Service (VTS) which uses the ground-based radar system has some difficulties in detecting moving ships due to the limited detection range cf about 10 miles. This paper introduces the field testing results of ship detection by RADARSAT SAR imagery, and proposes a new approach for a Vessel Monitoring System(VMS), including VTS, and SAR combination service.

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영해관리를 위한 인공위성 원격탐사기술 (Space-based Ocean Surveillance and Support Capability: with a Focus on Marine Safety and Security)

  • 양찬수
    • 해양환경안전학회:학술대회논문집
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    • 해양환경안전학회 2007년도 춘계학술발표회
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    • pp.127-132
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    • 2007
  • From the 1978 Seasat synthetic aperture radar(SAR) to present systems, spaceborne SAR has demonstrated the capability to image the Earth's ocean and land features over broad areas, day and night, and under most weather conditions. The application of SAR for surveillance of commercial fishing grounds can aid in the detection of illegal fishing activities and provides more efficient use of limited aircraft or patrol craft resources. In the area of vessel traffic monitoring for commercial vessels, Vessel Traffic Service (VTS) which uses the ground-based radar system has some difficulties in detecting moving ships due to the limited detection range of about 10 miles. This paper introduces the field testing results of ship detection by RADARSAT SAR imagery, and proposes a new approach for a Vessel Monitoring System(VMS), including VTS, and SAR combination service.

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Analysis of Vessel Traffic in Tokyo Bay Observed by New Remote Radar Network System

  • Okano, Tadashi;Ohtsu, Kohei;Hagiwara, Hideki;Shoji, Ruri;Tamaru, Hitoi;Liu, Shun
    • 한국항해항만학회:학술대회논문집
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    • 한국항해항만학회 2004년도 Asia Navigation Conference
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    • pp.208-216
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    • 2004
  • Since 2000, the authors have been developing remote radar network system to observe the vessel traffic in Tokyo Bay. In December 2002, the first operational remote radar station was set at the National Defense Academy in Yokosuka, and vessel traffic observation was started. However, it was impossible to perform accurate observation in the northern part of Tokyo Bay by this Yokosuka radar station only. In September 2003, the second remote radar station and AIS receiving station were installed at Higashi Ogishima in Kawasaki. This second radar enabled us to carry out accurate observation in that area. Both radars can be remotely controlled from the monitoring station in Tokyo University of Marine Science and Technology. On September 30 and October 1,2003, the vessel traffic observation was carried out using both radars. Combining radar images observed by both radars, the ships' tracks were taken and the dangerous ships were extracted by using SJ value and Bumper Model. The time changes of dangerous ship density in some areas in Tokyo Bay and utilization ratio of the traffic routes were also investigated. In addition, analyzing the AIS date received at Kawasaki station, the positions and speed vectors of the ships equipped with AIS were shown.

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선박교통관제 클라우드 시스템 개발에 따른 사용자 요구사항 분석 (Analysis of User Requirements for Development of Vessel Traffic Services Cloud System)

  • 이리나;김주성;이홍훈;이진석;남궁호
    • 해양환경안전학회지
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    • 제28권2호
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    • pp.314-323
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    • 2022
  • 선박교통관제사는 선박 교통의 안전과 효율을 도모하기 위하여 선박교통관제 설비로 지정된 시스템 및 센서 장비를 활용하여 선박교통관제 업무를 수행한다. 선박교통관제의 효과적 운영을 위한 관제 필요 정보는 지정된 선박교통관제 설비 이외의 부가적인 정보 창구의 접근이 요구되며, 이러한 다양한 정보 열람 창구를 일원화하기 위하여 선박교통관제 클라우드 시스템 개발이 진행 중이다. 본 연구에서는 선박교통관제 클라우드 시스템 도입에 따른 사용자 필요 정보 식별을 위하여 선박교통관제 업무 분석 및 운영 정보와 선박교통관제 설비 연계 분석을 수행하였다. 국내외 문헌 검토와 전문가 인터뷰를 통하여 선박교통관제 업무 분석을 수행하였으며, 선박교통관제 설비에 따른 필요 정보를 식별·연계하였다. 분석 결과 전체 내·외부 정보 창구의 필요 정보는 37개의 범주로 식별되었으며, 필수 및 보조관제 설비 이외 열람이 필요한 추가 요구 정보는 8개의 정보창구를 통하여 수집 가능한 것으로 확인되었다. 본 연구를 통하여 식별한 사용자 요구사항은 선박교통관제 클라우드 시스템 구축을 위한 데이터 수집·처리 구조 설계에 적용될 것이다. 향후 시나리오 기반 관제 시스템 사용자 운영 분석을 통하여 사용자 요구 및 필요 정보를 개정·보완하고, 시스템 인터페이스 디자인 설계에 관한 추가 연구가 필요하다.

A Study on the Sector Division for Effective Vessel Traffic Service : Focused on Daesan, Pyeongtaek and Inchon Harbour

  • Yang, Hyoung-Seon
    • 한국항해항만학회지
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    • 제34권4호
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    • pp.265-270
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    • 2010
  • The national VTS was launched in 1993, and has adopted a harbour-oriented control method which is unable to consider enough characteristics of its work. However, for the past 17 years, the characteristics has changed due to increased amount of vessels. Up to now the domestic Vessel Traffic Service has adopted harbour-oriented control method which is unable to consider enough characteristics of its work. However, developed countries have carried out waters-oriented control method, according to the using areas of ships, to be well considered the characteristics of control for increasing efficiency of it. Especially, VTS of Daesan, Pyeongtaek and Inchon harbour can have confusions of control because of overlapped service areas of it. Therefore, in this paper suggested a new Sector Division that the relevants waters is divided into 3 operational Regions and these are divided into nine sectors again, for the purpose of improving the efficiency and the concentration of VTS.