• Title/Summary/Keyword: nautical

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A Study on Development of Digital Nautical Publication (전자항해서지 개발 연구)

  • Oh, Se-Woong;Park, Jong-Min
    • Journal of Navigation and Port Research
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    • v.34 no.1
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    • pp.9-14
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    • 2010
  • Nautical Publications is a special purpose book, or a specially compiled database, that is issued officially by or on the authority of a Government, authorized Hydrographic Office and is designed to meet the requirements of marine navigation such as SOLAS and PSC. Nautical publications include List of Lights, Sailing directions. The SNPWG(Standardization Nautical Publications Working Group) from the IHO is working to implement in computer systems all those elements of interest for Hydrography and Navigation Concerning nautical publications' digitization process, the SNPWG has defined three types of nautical publications: Type 1 : Hard copy(NP1), Type 2 : Digital version, A slight modification of type 1(NP2), Type 3 : Digital version for ECDIS(NP3). Nautical Publications is essential with nautical charts as reference information to navigate. Development of digital nautical publications is needed for liaison with the chart production system, up-to-dateness of hydrographic information, improvement of service. But, Korean status is positioned in NP1. In our study, we surveyed the present status of nautical publications for development strategy of digital nautical publications. We build database of south coast of sailing direction, develop a manager program, convert the contents to KML( Keyhole Markup Language), develop a user program.

A study on Development of Digital Nautical Publication (전자항해서지 개발방안 연구)

  • Oh, Se-Woong;Park, Jong-Min;Yoo, Ki-Hyun;Suh, Sang-Hyun
    • Proceedings of the Korean Institute of Navigation and Port Research Conference
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    • 2009.06a
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    • pp.65-68
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    • 2009
  • A Nautical Publication is a special purpose book, or a specially compiled database, that is issued officially by or on the authority of a Government, authorized Hydrographic Office or other elevant ogvernment institution and is designed to meet the requirements of marine navigation Nautical publications include list of lights, Buoys, Beacons, Radio Siganals, Sailing directions. The SNPWG(Standardization Nautical Publications Working Group) from the IHO is working to implement in computer systems all those elements of interest for Hydrography and Navigation Concerning the nautical publications digitization process, the SNPWG has defined three types of nautical publication: Type 1 : Hard copy(NP1), Type 2 : Digital version, A slight modification of type 1(NP2), Type 3 : Digital version for ECDIS(NP3). Nautical Publication is essential with nautical charts as refrerence information to navigation. Development of digital nautical publication is needed for liaison with charts production system, up-to-dateness of hydrographic information, improvement of service. But, korea's status is positioned in NP1. In our study, we surveyed the present status of nautical publciation for strategy of digital nautical publication development. Also, we build database of south coast of sailing direction and develp a program for compilation and management of sailing direction.

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DEVELOPMENT OF NAUTICAL ALMANAC AT KOREA ASTRONOMY OBSERVATORY (천문대의 항해력 개발)

  • Han, In-U;Sin, Jun-Ho
    • Publications of The Korean Astronomical Society
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    • v.9 no.1
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    • pp.85-100
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    • 1994
  • In Korea Astronomy Observatory, we developed a S/W package to compile the Korean Nautical Almanac. We describe the motivation to develop the S/W and explain the S/W package in general terms. In appendix, we describe the procedure to calculate the polaris table in more detail. When we developed the S/W, we paid much attention to produce accurate data. We also made great effort to automate the compilation of Nautical Almanac as far as possible, since the compilation is time consuming and labour extensive. As a result, the S/W we developed turns out to be very accurate and efficient to compile Nautical Almanac. In fact, we could compile a Korean Nautical Almanac in a few days.

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A Study on the Application of Nautical Charts보 Information Using GIS (GIS를 이용한 해도정보의 활용방안 연구)

  • 김종규;김정현
    • Journal of Ocean Engineering and Technology
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    • v.17 no.1
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    • pp.61-66
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    • 2003
  • A nautical chart is an essential material not only for the safety of navigation at sea, but also for the research and understanding of the ocean. Paper nautical harts have been used for navigational purposes for several hundreds years, but it was show that paper nautical charts have certain limitations, because the speed of ships has increased dramatically, and Global Positioning Systems (GPS) are now available at sea. Thus, the development of digital charts has been conducted by a number of countries. As a result, the International Hydrographic Organization (IHO) has developed a standard format, Special Publication No. 57 (S-57), as a guideline for the production of electronic navigational charts (ENC). Even though ENCs are a state-of-the-art navigational tool because they are produced on the basis of Geographical Information System (GIS) technology, they can be utilized for various purposes. in this paper, the usage of paper nautical charts, ENCs, and digital charts is reviewed. Also, the various application system that make use of electronic navigational harts and digital charts, as a basic geographical source of information, will be examined on the basis of GIS.

Integrated Management of Digital Topographic Map and Digital Nautical Chart Using Analysis of Control Points in Precise DGPS Surveying (정밀 DGPS측량의 기준점 분석에 따른 수치지형도와 수치해도의 통합관리)

  • Jang Yong-Gu;Kim Sang-Seok
    • Journal of Navigation and Port Research
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    • v.29 no.3 s.99
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    • pp.269-274
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    • 2005
  • Geodetic surveying using precise GPS equipment are used without analysis with a statistical verification of GPS observed value and it was preformed by necessity to integration projection of digital topographic map and nautical Chart for integration geographic information system construction. The purpose of this study proposes method that improve accuracy of GPS observed value and direction that integrally manage digital topographic map and electronic nautical chart in analyzing the boundary line error between digital topographic map and nautical Chart. For improvement of the precision of GPS observed value, the author studied precision-analysis of GPS observed value by geometric strength and variance factor in 3 control points used in GPS network adjustment. And like this, produce EDM measurement using this GPS observation results and compare the whole boundary point error when set digital topographic map and nautical chart by these boundary.

Application of Marine Geographic Information System Using Analysis of Control Points in Postprocessing DGPS Surveying (후처리 DGPS측량의 기준점 분석을 이용한 해양지리정보시스템 적용)

  • 김진영;장용구;김상석;강인준
    • Proceedings of the Korean Institute of Navigation and Port Research Conference
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    • 2004.04a
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    • pp.275-281
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    • 2004
  • Geodetic surveying using precise GPS equipment are used without analysis with a statistical verification of GPS observed value and it was preformed by necessity to integration projection of digital topographic map and nautical Chart for integration geographic information system construction. The purpose of this study proposes method that improve accuracy of GPS observed value and direction that integrally manage digital topographic map and electronic nautical chart in analyzing the boundary line error between digital topographic map and nautical Chart. For improvement of the precision of GPS observed value, the author studied precision-analysis of GPS observed value by geometric strength and variance factor in 3 control points used in GPS network adjustment. This study compare the whole boundary point error When producing EDM measurement using this GPS observation results and setting digital topographic map and nautical chart by these boundary.

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A Comparative Study on Curriculum of Nautical Science in major Maritime Universities (주요 해양대학의 항해학 전공 커리큘럼 비교 연구)

  • Kim, Sung-June
    • Proceedings of the Korean Institute of Navigation and Port Research Conference
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    • 2018.11a
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    • pp.193-199
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    • 2018
  • Due to the rapid development of AI, autonomous vessels will be realized in the near future. However, the curriculum of nautical science in maritime university is not prepared for this trend. In addition, after the expiration of the mandatory boarding period, a number of junior merchant marine officers are leaving offshore jobs to find onshore jobs. This is a comparative analysis of curriculum of nautical science in maritime universities. Since most of seafaring countries ratified STCW 2010, nearly all themaritime universities train their cadets by followings the procedures required by STCW. Therefore, it is necessary to examine the curriculum of these marine universities in oder to confirm the appropriateness of our curriculum of nautical science. This will ultimately be used as a reference for the development of an ideal curriculum to prepare for rapid technological development and to prepare for a job on the ground.

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A Study on Computerization of the Sight Reduction(II) (천측계산의 전산화에 관한 연구(II))

  • 윤여정
    • Journal of the Korean Institute of Navigation
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    • v.9 no.2
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    • pp.1-12
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    • 1985
  • In order to computerize the sight reduction process completely, the coordinates of celestial bodies have to be calculated. The author calculates the equtorial coordinates of the sun and stars using formulae by computer programming. And they are compared with data from an nautical almanac. Generally, data based on formulae is slightly less accurate than those derived from an nautical almanac. In the case of calculating coordinates of the sun, maximum error of GHA is $0{'\\.}2$, and that of declination is $0{'\\.}1$.

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Design of Monitoring System for Managing Officer's Operation with Supporting of Nautical Safety (선박 안전운항 지원을 위한 승무원 운용상황 감시 시스템의 설계)

  • Kim, Ok-Soo;Lee, Myung-Won
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.16 no.7
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    • pp.1335-1343
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    • 2012
  • Although navigation systems and automatic identification technologies are in use for nautical safety of ocean vessels, ship collisions are increasing due to the growing number of overseas transportations. Since these accidents are mostly caused by the watch officers and crews' human mistakes, it is essential to develop a new set of systems to prevent such misfortunes. Therefore, we suggest a control and management system which monitors crews in order to conduct secure on-board navigation and nautical safety. We also materialized a mobile terminal system and portable device for the crews to check the status of the ship, and we designed a platform for an integrated surveillance system to assure a harmless voyage. Lastly, we attested the mutual connections of integrated safety-related data.

Development of Bathymetric Data for Ocean Numerical Model Using Sea-Floor Topography Data: BADA Ver.1 (수심측량자료를 사용한 해양수치모델 전용 수심 데이터 제작: BADA Ver.1)

  • Yoo, Sang Cheol;Mun, Jong Yoon;Park, Woong;Seo, Gwang Ho;Gwon, Seok Jae;Heo, Ryong
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.31 no.3
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    • pp.146-157
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    • 2019
  • Recently, the importance of highly accurate bathymetric data is greatly emphasized by the increased use of the ocean numerical models and research results in major areas such as ocean forecasting and natural disaster. There are domestic bathymetric data mainly used in ocean numerical models of Choi et al.(2002) and Seo (2008), but the production year is old and the data was created on the basis of nautical charts. Nautical charts are made for the purpose of navigation and based on the minimum depth from bathymetric data, so there is a limitation to reproduce the actual submarine topography. Korea Hydrographic and Oceanographic Agency (KHOA) produces nautical charts every year through continuous bathymetric survey, but no bathymetric data for numerical models have been produced. In this study, using the raw bathymetric survey data, we built an exclusive bathymetric dataset (BADA Ver.1) for ocean numerical models and compared it with published bathymetric data.