• 제목/요약/키워드: ocean

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수중무선통신 시스템 개발 및 성능시험 (Development and It's Real-sea Test of an Underwater Acoustic Communication System)

  • 임용곤;박종원;김승근;최영철;김시문;변성훈
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2008년도 하계종합학술대회
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    • pp.89-90
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    • 2008
  • We present an implementation and it's real-sea test of an underwater acoustic communication system, which allows the system to reduce complexity and increase robustness in time variant underwater environments. For easy adaptation to complicated and time-varying environments of the ocean, all-digital transmitter and receiver systems were implemented. For frame synchronization the CAZAC sequence was used, and QPSK modulation/demodulation method with carrier frequency of 25kHz and a bandwidth of 5kHz were applied to generate 10kbps transmission rate including overhead. To improve transmission quality, we used several techniques and algorithms such as adaptive beamforming, adaptive equalizer, and convolution coding/Viterbi decoding. For the verification of the system performance, measurement of BER has been done in a very shallow water with depth of 20m at JangMok, Geoje. During the experiment, image data were successfully transmitted up to about 9.6km.

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천리안해양관측위성을 활용한 해양 재난 검출 시스템 (Ocean Disaster Detection System(OD2S) using Geostationary Ocean Color Imager(GOCI))

  • 양현;유정미;한희정;유주형;박영제
    • 한국IT서비스학회지
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    • 제11권sup호
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    • pp.177-189
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    • 2012
  • We developed the ocean disaster detection system(OD2S) which copes with the occurrences of ocean disasters (e. g. the red and green tide, the oil spill, the typhoon, and the sea ice) by converging and integrating the ocean color remote sensing using the satellite and the information technology exploiting the mass data processing and the pattern recognitions. This system which is based on the cosine similarity detects the ocean disasters in real time. The existing ocean color sensors which are operated in the polar orbit platforms cannot conduct the real time observation of ocean environments because they support the low temporal resolutions of one observation a day. However, geostationary ocean color imager(GOCI), the first geostationary ocean color sensor in the world, produces the ocean color images(e. g. the chlorophyll, the colored dissolved organic matter(CDOM), and the total suspended solid(TSS)), with high temporal resolutions of hourly intervals up to eight observations a day. The evaluation demonstrated that the OD2S can detect the excessive concentration of chlorophyll, CDOM, and TSS. Based on these results, it is expected that OD2S detects the ocean disasters in real time.

종합해양과학기지 구축 및 활용의 경제성 분석 (An Economic Feasibility Study for Construction and Use of Korea Ocean Research Stations)

  • 송상화;신광섭;김재곤;정진용
    • 산업경영시스템학회지
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    • 제38권1호
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    • pp.52-64
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    • 2015
  • Korea ocean research stations manage the weather and environmental data collected from coastal and ocean areas to provide short-term and long-term ocean forecasts. The purpose of this paper is to analyze and quantify economic benefits of the ocean research stations with sensors to observe physical, chemical, and biological data. The construction and operation of an integrated ocean observation station is expected to reduce uncertainty about ocean and coastal areas and to improve the quality of ocean forecasts. The economic benefits are mainly come from improved search and rescue operations, ocean pollution management, yellow dust management, and improved productivity in ocean-related industries. In addition, an input-output analysis is performed to evaluate the economic impacts of ocean research stations nationwide. The analysis shows that the system can contribute to industries such as fishing, maritime and air cargo, medical and health care.

고성 해양심층수 개발시설의 기본설계 연구 (Fundamental Design of Development Facilities of Deep Ocean Water Resource at Gosung Sea)

  • 김현주;홍석원;최학선;홍기용;양찬규;홍섭;홍사영;김진하
    • 한국해양공학회:학술대회논문집
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    • 한국해양공학회 2003년도 춘계학술대회 논문집
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    • pp.83-88
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    • 2003
  • Recently, deep ocean water (DOW), which is plentiful in the East sea, has been recognized a global resources for 21st century. To develop DOW resource of 300m deep at Gosung sea, the pipeline of about 4 km long is essentially required to establish land based model complex of DOWA techno-park at coastal zone. This study aims to establish design procedure of DOW supplying and utilizing systems, and to complete basic design of every major facilities. To design, various numerical analysis and engineering consideration have been studied by cooperative works for practical use.

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해양교육 모듈개발에 관한 연구 -부산지역을 중심으로- (A Study on the Development of Module for the Ocean Education -Focus on Busan Metropolitan City-)

  • 정우리;문성배
    • 한국항해항만학회지
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    • 제37권1호
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    • pp.23-28
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    • 2013
  • 우리나라의 해양교육은 세계 5위의 해양강국이라는 명성에 비해 매우 미비한 실정이다. 본 연구에서는 국내외 해양교육의 운영현황을 파악하고, 해양교육을 체계적이고 효율적으로 운영하기 위한 방안으로 모듈식 해양교육 프로그램을 개발하였다. 특히, 부산지역을 중심으로 한 해양교육 모듈식 프로그램을 제시하였다. 또한 효과적인 해양교육이 이루어질 수 있도록 상호연관성이 있는 모듈을 조합한 형태의 해양교육코스를 제안하였으며, 이는 향후 해양교육의 후속사업의 토대를 마련하는 계기가 될 뿐 아니라 부산지역의 해양교육에서 우리나라 전 지역으로 확대하여 해양강국으로서의 해양의식 함양 및 해양교육을 활성화하는데 이바지할 수 있을 것이다.

기상청 계절예측시스템(GloSea5)의 해양성층 강화시기 단기 해양예측 정확도 및 대기-해양 접합효과 (Accuracy of Short-Term Ocean Prediction and the Effect of Atmosphere-Ocean Coupling on KMA Global Seasonal Forecast System (GloSea5) During the Development of Ocean Stratification)

  • 정영윤;문일주;장필훈
    • 대기
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    • 제26권4호
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    • pp.599-615
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    • 2016
  • This study investigates the accuracy of short-term ocean predictions during the development of ocean stratification for the Korea Meteorological Administration (KMA) Global Seasonal Forecast System version 5 (GloSea5) as well as the effect of atmosphere-ocean coupling on the predictions through a series of sensitive numerical experiments. Model performance is evaluated using the marine meteorological buoys at seas around the Korean peninsular (KP), Tropical Atmosphere Ocean project (TAO) buoys over the tropical Pacific ocean, and ARGO floats data over the western North Pacific for boreal winter (February) and spring (May). Sensitive experiments are conducted using an ocean-atmosphere coupled model (i.e., GloSea5) and an uncoupled ocean model (Nucleus for European Modelling of the Ocean, NEMO) and their results are compared. The verification results revealed an overall good performance for the SST predictions over the tropical Pacific ocean and near the Korean marginal seas, in which the Root Mean Square Errors (RMSE) were $0.31{\sim}0.45^{\circ}C$ and $0.74{\sim}1.11^{\circ}C$ respectively, except oceanic front regions with large spatial and temporal SST variations (the maximum error reached up to $3^{\circ}C$). The sensitive numerical experiments showed that GloSea5 outperformed NEMO over the tropical Pacific in terms of bias and RMSE analysis, while NEMO outperformed GloSea5 near the KP regions. These results suggest that the atmosphere-ocean coupling substantially influences the short-term ocean forecast over the tropical Pacific, while other factors such as atmospheric forcing and the accuracy of simulated local current are more important than the coupling effect for the KP regions being far from tropics during the development of ocean stratification.

DEVELOPMENT OF CHLOROPHYLL ALGORITHM FOR GEOSTATIONARY OCEAN COLOR IMAGER (GOCI)

  • Min, Jee-Eun;Moon, Jeong-Eon;Shanmugam, Palanisamy;Ryu, Joo-Hyung;Ahn, Yu-Hwan
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2007년도 Proceedings of ISRS 2007
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    • pp.162-165
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    • 2007
  • Chlorophyll concentration is an important factor for physical oceanography as well as biological oceanography. For these necessity many oceanographic researchers have been investigated it for a long time. But investigation using vessel is very inefficient, on the other hands, ocean color remote sensing is a powerful means to get fine-scale (spatial and temporal scale) measurements of chlorophyll concentration. Geostationary Ocean Color Imager (GOCI), for ocean color sensor, loaded on COMS (Communication, Ocean and Meteorological Satellite), will be launched on late 2008 in Korea. According to the necessity of algorithm for GOCI, we developed chlorophyll algorithm for GOCI in this study. There are two types of chlorophyll algorithms. One is an empirical algorithm using band ratio, and the other one is a fluorescence-based algorithms. To develop GOCI chlorophyll algorithm empirically we used bands centered at 412 nm, 443 nm and 555 nm for the DOM absorption, chlorophyll maximum absorption and for absorption of suspended solid material respectively. For the fluorescence-based algorithm we analyzed in-situ remote sensing reflectance $(R_{rs})$ data using baseline method. Fluorescence Line Height $({\Delta}Flu)$ calculated from $R_{rs}$ at bands centered on 681 nm and 688 nm, and ${\Delta}Flu_{(area)}$ are used for development of algorithm. As a result ${\Delta}Flu_{(area)}$ method leads the best fitting for squared correlation coefficient $(R^2)$.

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해양위성센터 구축 소개 : 기반환경 및 하드웨어 중심 (Introduction to Establishment of the Korea Ocean Satellite Center : Basic Environment and Hardware)

  • 양찬수;배상수;한희정;안유환
    • 해양환경안전학회:학술대회논문집
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    • 해양환경안전학회 2008년도 춘계학술발표회
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    • pp.191-195
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    • 2008
  • 한국해양연구원에서는 2009년 6월 예정인 통신해양기상위성의 해색센서(GOCI) 데이터의 수신, 처리, 배포를 위한 해양위성센터를 구축하고 있다. 해양위성센터의 위치는 전파 수신 환경 등의 조건을 고려하여, 5곳의 후보지중 안산으로 최종 선정하였고, 기존 건물을 센터의 기능에 맞게 구조변경을 완료하였다. L-Band로 전송되는 위성 신호를 수신하기 위해 9m 그레고리안식 안테나 및 RF 장비 등 수신시스템을 구축하고 있으며, 수신된 데이터를 처리하고 관리하기 위해 네트워크장비, 대용량 저장장치, 위성자료 전처리시스템, 위성자료 처리시스템, 자료관리 시스템, 통합감시제어시스템, 기관간자료교환시스템을 구축하였다. 추후 자료배포시스템, 작업관리시스템, 위성자료 통합연구분석시스템, 외국위성 수신시스템 등을 구축 완료하여, 정지궤도 해양위성의 활용 극대화를 위한 해양위성센터 구축을 최종목표로 하고 있다.

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