• Title/Summary/Keyword: 전역위성항법시스템

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LORAN-C using and Position error improvement against being unable to use the Global Positioning System(GPS) (위성항법시스템(GPS)의 이용불능을 대비한 LORAN-C 활용과 위치오차 개선)

  • Goo, Ja-Heon;Kang, Gwang-Won;An, Young-Eun;Han, Seung-Jo;Park, Jong-An
    • Journal of Advanced Navigation Technology
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    • v.11 no.1
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    • pp.1-8
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    • 2007
  • Loran-C of ground transmitting station base that can prevent confusion of country navigation system and give BACK-UP function about electric wave navigation comparing utilization incapability state about GPS(Global Positioning System) infra that user is spreading rapidly over our society whole such as sea/aviation safety, vehicles navigation, minuteness agriculture, minuteness measurement in this treatise practical use of Loran-C navigation propose. Executed ASF(Additional Secondary Phase Factor) production and an application experiment Loran-C by location error improvement way to enhance practical use value. By the result Loran-C in conclusion that can improve location error 100~400m remarkably by 10~65m reach. Also, production extent is latitude when go composition medium and bends cotton at ASF revision table utilization of land area, this smell is judged to be suitable hardness 10 minutes. And notable location error improvement and numeric of GPS BACK-UP function are judged to be possible at a ASF revision table application to Korea Peninsula whole area hereafter.

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The analysis for the static and kinetic positioning accuracy of NDGPS (NDGPS의 정적 및 동적 측위 정확도 분석)

  • Song, Geul-Jae;Park, Kwon-Il;Kong, Hyun-Dong
    • Journal of Navigation and Port Research
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    • v.32 no.8
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    • pp.611-619
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    • 2008
  • The Ministry of Land, Transport and Maritime Affairs is working on the construction of Nationwide DGPS(NDGPS) with connection to Maritime DGPS Reference Stations and if Chun-cheon Reference Station is to be completed in 2008, DGPS positioning information is available in the whole area of Republic of Korea. Therefore to promote the usage of DGPS surveying information, we measured and panalyzed the accuracy of DGPS. In real-time DGPS positioning accuracy were 0.42m of planar Root Mean Square(RMS) error in static survey and 0.48m of planar RMS error in dynamic survey. We went abreast with RTK comparison measurement. According to these results. DGPS positioning information cannot be applied directly to the GIS construction field, but GIS application fields, requiring the real-time positioning information. can take advantage of it in variable cases.

The Analysis on radio wave propagation of DGPS on Sea IT Land path for the design of 300kHz bands NDGPS (300kHz대의 NDGPS시스템 설계를 위한 해.육상경로 DGPS 전파의 전파특성 분석)

  • Kim, Kyung-Tae;Kim, Min-Jung;Jung, Ja-Yong;Ko, Kwang-Soob
    • Journal of Navigation and Port Research
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    • v.26 no.1
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    • pp.15-21
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    • 2002
  • Re Ministry of Maritime Affairs and Fisheries in Korea completed the installation of 8 maritime DGPS station mfd is to going install 3 additional Maritime DGPS station for the enhancement of dual coverage in Korean coasts until Oct. 2002. Moreover, Korean government decided to provide the NDGPS service over the whole Korean inland area, which will be schedule to complete until June. 2004. On this paper to evaluate the propagation characteristics of using maritime DGPS site as un element of NDGPS ann to evaluate the required number of additional NDGPS sites, the propagation characteristics of the radio waves of 300kHz bands on sea and land nth are studied With the result of study, the conceptional design of Korean NDGPS System is proposed, which consists of 5 NDGPS sites with modified antenna and tかee coverage monitoring sites.