• 제목/요약/키워드: 무인해양시스템

검색결과 123건 처리시간 0.024초

자율운항선박의 충돌회피모델에 적용되는 COLREGs 항법 해석의 모호성 식별에 관한 연구

  • 박득진;박성호;김종관;박상아
    • 한국항해항만학회:학술대회논문집
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    • 한국항해항만학회 2022년도 추계학술대회
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    • pp.82-83
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    • 2022
  • 국제해상충돌예방규칙(COLREGs)에 관한 협약은 해상에서 발생하는 충돌사고를 방지하기 위한 규칙으로 구성되어 있으며, Seaman(선원)의 Qualitative Rule(질적 규칙)과 Ordinary practice(통상적인 관행)에 기초하고 있다. MASS의 출현으로 인하여 질적 규칙과 관행으로 인하여 COLREG를 기반으로 한 항법 해석의 기준의 다름이 발생하였고, 기준의 차이로 인해 충돌 상황에 대한 항법 해석의 모호성문제가 발생하고 있다. 따라서 본 연구는 COLREG의 항법 해석의 모호성을 규명하여 유인과 무인 사이의 충돌회피 상황을 명확히 하는 것을 목적으로 한다. COLREG를 기반으로 한 충돌 상황의 모호성을 식별하기 위해 실제 항해사를 대상으로 충돌 회피 상황에 대한 인식을 조사하고, 정면 및 횡단, 횡단 및 추월 상황을 기반으로 조사 결과를 분석하였다. 분석 결과, 응답자들은 008°에서 마주치는 선박에 대해서 정면 또는 횡단 상황 항법 규칙을 적용해야 하는지, 160°에서 다가오는 선박에 대해서 추월 또는 횡단 상황을 적용해야 하는지에 대해 확신하지 못하는 것으로 나타났다. 이러한 결과는 이러한 모호성의 증가와 함께 충돌회피상황의 수동적 행동보다 능동적인 행동을 취함으로써 선원에 의한 충돌위험을 회피하려는 경향이 더 강해짐을 나타낸다.

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다중플랫폼을 이용한 해양영토 광역통합감시 시스템 (Wide Integrated Surveillance System of Marine Territory Using Multi-Platform)

  • 유주형;이석;김덕진;황재동
    • 대한원격탐사학회지
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    • 제34권2_2호
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    • pp.307-311
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    • 2018
  • 국가 해양영토에 대한 해양 불법행위, 영해 침범 등 안보위협사항과 해양사고, 해양오염에 따른 피해저감 대책을 마련하고, 안전하고 깨끗한 해양 이용 및 효율적인 해양자원 개발을 위한 해양 감시체계 구축이 필요하다. 해양감시를 위해서는 시공간성, 정확도, 운용성의 정보 특성이 요구되며, 가능한 광역에 대한 실시간 정보가 상시적으로 제공되어야 한다. 본 특별호는 각 플랫폼의 특성을 파악하여 광역감시망 체계 구축을 위한 활용 가능성을 평가하고, 향후 다양한 플랫폼 간 융복합 연구 방향을 제시하기 위하여 발간하였다. 2015년부터 한국해양과학기술원과 협동연구기관에서 준실시간으로 위성, 무인항공기와 HF 해양레이더를 이용한 선박과 적조탐지를 위한 "국가해양영토 광역감시망 구축 기반연구" 사업을 수행 중이다. 이번 특별호의 목적은 해양감시에서의 통합시스템의 중요성을 소개하고, 해양재해, 오염과 사고 감시에 대한 원격탐사 기술과 활용에 대한 최근 연구에 대한 토론의 장을 만드는 것이다.

해양 유·무인 수상함정의 감시정찰 임무를 위한 위치-경로 문제 (Location-Routing Problem for Reconnaissance Surveillance Missions of the Maritime Manned-Unmanned Surface Vehicles)

  • 이진호
    • 산업경영시스템학회지
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    • 제46권4호
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    • pp.238-245
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    • 2023
  • As technologies have been more quickly developed in this 4th Industry Revolution era, their application to defense industry has been also growing. With these much advanced technologies, we attempt to use Manned-Unmanned Teaming systems in various military operations. In this study, we consider the Location-Routing Problem for reconnaissance surveillance missions of the maritime manned-unmanned surface vehicles. As a solution technique, the two-phase method is presented. In the first location phase, the p-median problem is solved to determine which nodes are used as the seeds for the manned vehicles using Lagrangian relaxation with the subgradient method. In the second routing phase, using the results obtained from the location phase, the Vehicle Routing Problems are solved to determine the search routes of the unmanned vehicles by applying the Location Based Heuristic. For three network data sets, computational experiments are conducted to show the performance of the proposed two-phase method.

반자율 무인잠수정을 위한 실시간 제어 아키텍쳐 (A Real-Time Control Architecture for a Semi-Autonomous Underwater Vehicle)

  • 이계홍;전봉환;이판묵;홍석원
    • 한국해양공학회:학술대회논문집
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    • 한국해양공학회 2004년도 학술대회지
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    • pp.198-203
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    • 2004
  • This paper describes a real-time control architecture for DUSAUV (Dual Use Semi-Autonomous Underwater Vehicle), which has been developed at Korea Research Institute of Ships & Ocean Engineering (KRISO), KORDI, for being a test-bed oj development of technologies for underwater navigation and manipulator operation. DUSAUV has three built-in computers, seven thrusters for 6 degree of freedom motion control, one 4-function electric manipulator, one pan/tilt unit for camera, one ballasting motor, built-in power source, and various sensors such as IMU, DVL, sonar, and so on. A supervisor control system for GUI and manipulator operation is mounted on the surface vessel and communicates with vehicle through a fiber optic link. Furthermore, QNX, one of real-time operating system, is ported on the built-in control and navigation computers of vehicle for real-time control purpose, while MicroSoft OS product is ported on the supervisor system for GUI programming convenience. A hierarchical control architecture which consist of three layers (application layer, real-time layer, and physical layer) has been developed for efficient control system of above complex underwater robotic system. The experimental results with implementation of the layered control architecture for various motion control of DUSAUV in a basin of KRISO is also provided.

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자율무인잠수정 테스트베드 이심이의 개발과 수조시험 (Development and Tank Test of an Autonomous Underwater Vehicle 'ISiMI')

  • 전봉환;박진영;이판묵;이필엽;오준호
    • 한국해양공학회지
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    • 제21권2호
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    • pp.67-74
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    • 2007
  • Maritime and Ocean Engineering Research Institute (MOERI), a branch of KORDI, has designed and manufactured a model of an autonomous underwater vehicle (AUV) named ISiMI (Integrated Submergible for Intelligent Mission Implementation). ISiMI is an AUV platform to satisfy the various needs of experimental test required for development of challenging technologies newly investigated in the field of underwater robot; control and navigational algorithms and software architectures. The main design goal of ISiMI AUV is downsizing which will reduce substantially the operating cost compared to other vehicles previously developed in KORDI such as VORAM or DUSAUV. As a result of design and manufacturing process, ISiMI is implemented to be 1.2 m in length, 0.17 m in diameter and weigh 20 kg in air. A series of tank test is conducted to verify the basic functions of ISiMI in the Ocean Engineering Basin of MOERI, which includes manual control with R/F link, auto depth, auto heading control and a final approach control for underwater docking. This paper describes the implementation of ISiMI system and the experimental results to verify the function of ISiMI as a test-bed AUV platform.

광학식 유도장치를 이용한 자율 무인잠수정의 수중 도킹 알고리즘에 관한 연구 (Study on the Docking Algorithm for Underwater-Docking of an AUV Using Visual Guidance Device)

  • 최동현;전봉환;이판묵;김상현;임근남
    • 한국해양공학회지
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    • 제21권3호
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    • pp.33-39
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    • 2007
  • The more deeply the researches make progress in ocean researches including the seabed resource investigation or the oceanic ecosystem investigation, the more important the role of UUV gets. In case of study on the deep sea, there are difficulties in telecommunications between AUV and ships, and in data communication and recharging. Therefore, docking is required. In AUV docking system, the AUV should identify the position of docking device and make contact with a certain point of docking device. MOERI (Maritime & Ocean Engineering Research Institute), KORDI has conducted the docking testing on AUV ISIMI in KORDI ocean engineering water tank. As AUV ISIMI approachs the docking device, there is some cases of showing an unstable attitude, because the lights which is on Image Frame are disappeared. So we propose the docking algorithm that is fixing the rudder and stem, if the lights on image frame are reaching the specific area in the Image Frame. Also we propose the new docking device, which has a variety of position and light number. In this paper, we intend to solve the some cases of showing an unstable attitude that were found in the testing, which, first, will be identified the validity via simulation.

소형무인잠수정(AUV) 이심이의 개발 및 시험 (Development and Trials of an Small Autonomous Underwater Vehicle 'ISiMI')

  • 전봉환;박진영;이판묵;이필엽;이종무;오준호
    • 한국해양공학회:학술대회논문집
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    • 한국해양공학회 2006년 창립20주년기념 정기학술대회 및 국제워크샵
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    • pp.347-350
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    • 2006
  • Maritime and Ocean Engineering Research Institute (MOERI), a branch of KORDI, has designed and manufactured a model of an autonomous underwater vehicle (AUV) named ISiMI(Integrated Submergible for Intelligent Mission Implementation). ISiMI is an AUV platform to satisfy the various needs of experimental test required for development of challenging technologies newly investigated in the field of underwater robot; control and navigational algorithms and software architectures. The main design goal of ISiMI AUV is downsizing which will reduce substantially the operating cost compared to other vehicles previously developed in KORDI such as VORAM or DUSAUV. As a result of design and manufacturing process, ISiMI is implemented to be 1.2m in length, 0.17m in diameter and weigh 20 kg in air. A series of tank test is conducted to verify the basic functions of ISiMI in the Ocean Engineering Basin of MOERI, which includes manual control with R/F link, auto depth, auto heading control and a final approach control for underwater docking. This paper describes the implementation of ISiMI system and the experimental results to verify the function of ISiMi as a test-bed AUV platform.

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광학식 유도장치를 이용한 자율 무인잠수정의 수중 도킹 종단 유도 제어 (Terminal Guidance Control for Underwater-Docking of an AUV Using Visual Guidance Device)

  • 최동현;전봉환;박진영;이판묵;김상현;오준호
    • 한국해양공학회:학술대회논문집
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    • 한국해양공학회 2006년 창립20주년기념 정기학술대회 및 국제워크샵
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    • pp.335-338
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    • 2006
  • The more deeply the researches make progress in ocean researches including the seabed resource investigation or the oceanic ecosystem investigation, the more important the role of UUV gets. In case of study on the deep sea, there are difficulties in telecommunications between AUV and ships, and in data communication and recharging. Therefore, docking is required. In AUV docking system, the AUV should identify the position of docking and make contact with a certain point of docking device. MOERI (Maritime & Ocean Engineering Research Institute), KORDI has conducted the docking testing on AUV ISIMI in KORDI Ocean Engineering Water Tank. As AUV ISIMI approachs the docking device, it is presented that attitude is unstable, because the lights Which is on Image Frame are disappeared. So we fix the rudder and stem, if the lights on Image Frame are reaching the specific area in the Image Frame. In this paper, we intend to solve the problems that were found in the testing, which, first, will be identified via simulation.

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복합임무 무인수상정의 개발시험평가 및 검증절차에 관한 고찰 (A Study of the Development Test and Evaluation and Verification Procedure of a Multi-Mission USV, M-Searcher)

  • 박신배;김원제;이건철
    • 한국해양공학회지
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    • 제32권5호
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    • pp.402-409
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    • 2018
  • This paper describes the plan and procedure of a development test and evaluation that will be performed to verify the performance and technology of multi-mission unmanned surface vehicles (MMUSVs). In order to verify the design requirement of MMUSVs, we designed and manufactured the common platform of MMUSVs, which have an overall length of8.4 m, a displacement of 3,100 kg, and a speed of more than35 kts. The platform is equipped with several sub-systems, including radar and an EOTS/IRS. The EOTS/IRS, along with the search radar, is used for effective detection, identification, and targeting. The core technologies of MMUSV for DT&E will be investigated. The common platform design technologies, remote operating and control system technologies, autonomous navigation technologies, and unmanned operational technology of sensors and equipment will be studied for the development of the MMUSV's core technologies. The system will be able to make precise observations and track targets both manually and automatically during day and night conditions. Currently, the verification tests for each of the technologies and for the integrated system are in the pipeline for DT&E, which will be performed next year. Also, software reliability and life tests will be performed.

지속적인 동영상 스트리밍 서비스를 위한 다중 UAV 활용 기법 (Multiple UAVs Utilisation Method for Seamless Video Stream Service)

  • 김병국;홍운희;홍성화;강지헌
    • 한국정보통신학회:학술대회논문집
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    • 한국정보통신학회 2021년도 추계학술대회
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    • pp.670-672
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    • 2021
  • 동영상 스트리밍 기술은 다양한 영역에서 사용이 되고 있으며, 항공영역에서 또한 예외가 아니다. UAV (Unmanned Aerial Vehicle, 무인항공기) 기술은 꾸준히 발전하고 있고 군뿐만이 아닌 민간영역에서도 현재 많이 사용되고 있다. 이 UAV를 기반으로 원격지에서 동영상 스트리밍 서비스를 통해 실시간 감시 및 정찰이 가능해졌다. 그러나 UAV는 기상상태, 기체의 중량 그리고 배터리 등 다양한 환경 영향으로 인해 체공시간이 짧고 가변적이다. 따라서 다른 감시정찰 시스템대비 임무수행에 시간제약이 더 크다. 동영상 스트리밍 서비스의 경우 다수의 UAV를 활용하여 임무시간 단위로 순차적으로 비행시켜 직전 무인항공기의 임무를 인계하는 식으로 해결할 수 했다. 본 논문은 동영상 스트리밍 서비스를 수행하는 UAV 운영환경에서 항공기간 임무 인계가 이루어질 때 꾸준한 동영상 스트리밍 서비스가 지원될 수 있도록 제안한다.

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