• Title/Summary/Keyword: GIS 자료

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Development of 3-D GIS based Expression System for Utilization of Submarine Mineral Resource Exploration Data (해저자원 탐사자료의 효율적인 활용을 위한 3차원 GIS 기반의 표출 시스템 설계 및 구축)

  • Kim, Dong Il;Kim, Kye Hyun;Lee, Sung Joo;Park, Yong Hyun
    • Spatial Information Research
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    • v.21 no.3
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    • pp.21-30
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    • 2013
  • Recently, interest of submarine mineral resources has been increasing from the depletion of land resources around the world and many countries are involving in submarine mineral resource exploration work. South Korea is also in progress of mineral exploration and relevant study to ensure the submarine mineral resources from around the Korean Peninsula. As a result, the submarine mineral resource exploration data have been increasing annually. A database and 2D GIS-based system have been constructed for the management of the data. However, submarine mineral resource exploration data is explored and created on the sea-bed. Consequently, the visual confirmation of the water levels and marine landform is important for high dimension analysis. Therefore, the major aims of this study are to collect marine landform data from around the Korean Peninsula and to develop 3 dimension GIS based system that is linked to the submarine mineral resource exploration data. In detail, marine landform data were acquired for the Korean Peninsula and they were interpolated into raster file format. The raster file was then processed to be easily used and was entered into an Oracle database. Based on this database, 3D expression and overlap function between marine landform data and submarine mineral resource exploration data were designed using ArcScene offered by the ESRI. After design, 3D GIS based expression system was developed. Confirmations of locations and changes in the submarine mineral resource exploration data based on 3D GIS are enabled to support the efficient application of the proposed system. It is expected that this system will be highly useful for estimating the reserves of mineral resources and for providing valuable information for economic evaluations.

A Method of Integrative Application of Various Spatial Data on GIS Contents Implementation (GIS 콘텐츠 구축에서의 다양한 공간자료의 통합적인 활용방안)

  • 연상호;홍일화
    • Proceedings of the Korea Contents Association Conference
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    • 2004.05a
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    • pp.144-150
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    • 2004
  • GIS 콘텐츠의 가장 중요한 대상이 되는 지형 및 지리 공간정보는 다양한 자료의 수집과 변환에 의한 시스템 통합을 통하여 완성된다. 즉 다양한 공간자료의 통일된 표준화에 의해 통합을 이룰 수 있으므로, 그 내용과 형태가 서로 다른 공간정보는 처음 수집된 상태에서 여러 변환 과정을 통해 다른 형태와 영상으로 새롭게 생성되어 통합을 이루는 요소가 될 수 있다는 것이다. 본 연구에서는 대형 댐의 건설로 인하여 수몰된 지역의 과거의 지공간의 정보원 찾아 현실세계와 비교하여 그 차이를 살펴보기 위하여 영상복원을 하는데 이용된 여러 가지의 지공간 자료의 처리과정을 통하여 일반 사진부터 디지털 위성영상자료, 수몰 직전에 제작된 지형도, 마을 사진 등을 통합과정 을 통하여 수몰 이전의 GIS콘텐츠의 공간정보의 통합에 의한 활용 기법을 확인하였다.

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Multi-Buffer Zone Analysis of Geo-Based Integrated Thematic Mappable Information by Using GIS (GIS를 이용한 지질자료 기반 통합 주제정보의 다중 버퍼 영역분석)

  • 이기원;박노욱;권병두
    • Spatial Information Research
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    • v.7 no.2
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    • pp.159-173
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    • 1999
  • GIS has been regarded as one of important tools or methodologies for various geoscience applications. Recently, spatial data integration schemes for site-specific or field-specific thematic mapping are newly developed and utilized. However, these kinds of approaches are somewhat insufficient quantitative assessment of integrated layers towards known targets in-detailed . Moreover, GIS analysis scheme is rarely extended to scientific approaches. In this study, simple approach of Multi-Buffer Zone Analysis , related to GIS analystical aspect, is addressed and an actual application for predicting or favorable mapping of mineral occurrences, one of GIS-based geoscientific approaches, is performed, As for geo-processing in GIS itself, this scheme can be regarded as extension or adaptiation of cell-based buffering or proximity analysis to geoscientific data interpretation. This study is based on rationale that surface geological pattern around primitives such as a point, a line, or a polygon in GIS, representing significant geological features, can be efficiently utilized to delineate complex geological behaviors or events, especially handling multiple dta sets originated from multiple sources such as airborne geophysical/radiometric exploration, field survey, and even a classified image of remote sensing. Conclusively, this methodology associated wit GIS is though to be helpful to analyze the spatial pattern of multiple data, pointing given sources, and is expected to effectively utilize for exploratory analysis of cell-based resultant layer integrated with complex or different data sources.

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Geocomputation with Spatio-Temporal Database for Time Geography Application (시간지리학 응용을 위한 시공간데이터베이스 기반의 GIS 컴퓨팅 연구)

  • Park Key-Ho;Lee Yang-Won;Ahn Jae-Seong
    • Spatial Information Research
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    • v.13 no.3 s.34
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    • pp.221-237
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    • 2005
  • This study attempts at building a GIS computing environment that incorporates object-relational spatio-temporal database for the time geography model with space-time path, space-time prism and space-time accessibility. The proposed computing environment is composed of ( i ) mobile GIS application for collecting spatio-temporal trajectory data of an individual, ( ii ) spatio-temporal database server that includes time geography model, and (iii) geovisualization client that performs time geographic queries to the spatio-temporal database. The spatio-temporal trajectory data collected by GPS-PDA client is automatically processed and sent to server through data management middleware. The spatio-temporal database implemented by extending a generic DBMS provides spatio-temporal objects, functions, and SQL. The geovisualization client illustrates 3D visual results of the queries about space-time path, space-time prism, and space-time accessibility. This study confirms the possibility of integrating mobile GIS and DBMS for time geography model, and it presents the appropriate database model with spatio-temporal objects and functions that may handle very large data for time geography application.

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GIS Technology for Environmental Gelolgic Mapping (환경 지질도 작성을 위한 GIS 응용연구)

  • 김윤종;유일현;김원영;신은선
    • The Journal of Engineering Geology
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    • v.4 no.3
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    • pp.321-331
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    • 1994
  • Environmental geologic maps were produced on the cheong-Ju area using GIS technique. They are GIS maps on land management and regional land use planning. In the last year, the model of environmental geologic map was established, and the digital database was constructed by environmental and geotechnical data collected form various sources. The special maps for environmental geologic study were also pnoduced ; landslide hazard and risk map, cut & fill map, actual run-off map and engineering geological map. The maps are secondary models (sub-model) in order to create final environmental geologic map. Finally, Environmental Geologic Unit(EGU) was evaluated for regional land use planning and land management by EGIS(Environmental Geologic Inforafion System). This unit is very important in order to assess environmental geologic impact on large construction works and detailed road design etc.

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A Study on GIS Data Transform for Update the Digital Map with Construction drawings (수치지도 갱신을 위한 건설도면 자료의 GIS 데이터 변환에 관한 연구)

  • Park, Seung-Yong;Park, Woo-Jin;Yu, Ki-Yun
    • Proceedings of the Korean Society of Surveying, Geodesy, Photogrammetry, and Cartography Conference
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    • 2009.04a
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    • pp.11-13
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    • 2009
  • This research is renewal way to get latest digital map, We presented techniques to convert to GIS data for update digital map to utilize completion drawing of CAD data that is used construction and SOC construction. Conversion process is consisted of layer extraction, object transform, coordinate transform, format transform. GIS data that is changed via each process from CAD data can update digital map.

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High-Precision and 3D GIS Matching and Projection Based User-Friendly Radar Display Technique (3차원 GIS 정합 및 투영에 기반한 사용자 친화적 레이더 자료 표출 기법)

  • Jang, Bong-Joo;Lee, Keon-Haeng;Lee, Dong-Ryul;Lim, Sanghun
    • Journal of Korea Water Resources Association
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    • v.47 no.12
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    • pp.1145-1154
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    • 2014
  • In recent years, as frequency and intensity of severe weather disasters such as flash flood have been increasing, providing accurate and prompt information to the public is very important and needs of user-friendly monitoring/warning system are growing. This paper introduces a method that re-produces radar observations as multimedia contents and applies reproduced data to mesh-up services. In addition, a accurate GIS matching technique to help to track the exact location going on serious atmospheric phenomena is presented. The proposed method create multimedia contents having structures such as two dimensional images, vector graphics or three dimensional volume data by re-producing various radar variables obtained from a weather radar. After then, the multimedia formatted weather radar data are matched with various detailed raster or vector GIS map platform. Results of simulation test with various scenarios indicate that the display system based on the proposed method can support for users to figure out easily and intuitively routes and degrees of risk of severe weather. We expect that this technique can also help for emergency manager to interpret radar observations properly and to forecast meteorological disasters more effectively.

A Study on Coupling TOPMODEL with HyGIS (HyGIS와 TOPMODEL의 연계에 관한 연구)

  • Kim, Kyung Tak;Choi, Yun Seok;Jang, Jae Hyeok
    • Journal of the Korean Association of Geographic Information Studies
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    • v.7 no.4
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    • pp.155-165
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    • 2004
  • Hydrological model which is proper to watershed characteristics and analysis purpose must be used when we analyze water resources. But, although proper model is used, if objectivity and reasonability of data is low it is difficult to get good results from the model. So it is very important to decide the data which is used in selected model and estimate parameters by using the applied data. In this study, temporal and spatial data was constructed as standard data of test site and stored in HyGIS (Hydrological Geographic Information System) DB. A system which extracts temporal and spatial data required to run hydrological model from HyGIS DB by connecting TOPMODEL with HyGIS was developed. In this system, we can extract temporal and spatial data which is needed to run TOPMODEL from HyGIS DB and estimate model parameters by using genetic algorithm. We found that HyGIS and the system connected with TOPMODEL was effective to make temporal and spatial data used in TOPMODEL and estimate model parameters. From this study, we suggested the possibility that HyGIS could be applied properly to another hydrological model, too.

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A Study on Cyber GIS education for Local Government Officers (GIS 사이버 교육에 관한 연구 : 공무원을 대상으로)

  • 강영옥;이영주
    • Spatial Information Research
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    • v.12 no.1
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    • pp.73-87
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    • 2004
  • The Ministry of Construction and local governments have spent lots of money to construct 1: 1,000 scale digital topographic map. However the digital map is used only in facility management departments and the department in charge of GIS. In local governments, almost 70 ∼ 80 % of data are related with maps, which represents GIS technique and the digital maps could be used 70 ∼ 80 % of local government tasks. In this circumstances, it is necessary to spread out GIS usage through GIS education. However, there are lots of limits in GIS education such as number of people which can take classes at one time, physical location and size of classroom, and curriculums etc. To overcome these limits, cyber GIS education is becoming more important. This study presents how the cyber GIS education should be composed for the local government officers. For this purpose, this study accomplished followings ; grasp current GIS education status, analyze the needs of GIS education for local government officers, propose cyber GIS courses and curriculums according to the level of officers.

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Development of Open Land Management Information System(LMIS) Middleware (개방형 토지관리정보체계 미들웨어 개발에 관한 연구)

  • 서창완;백재현;홍성학
    • Spatial Information Research
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    • v.9 no.2
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    • pp.353-368
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    • 2001
  • Recently central and local governments developed a huge spatial database and system using full-scale Geographic Information System (GIS). But Inconsistent spatial data through duplicated database management drops off in efficiency and confidence of administration. It is difficult to share data because of their unique system and data type. Under these circumstances Ministry of Construction and Transportation (MOCT) has been carrying out Land Management Information System (LMIS) to computerize land administration and policy affairs and to implement land database such as law, spatial, attribute data. A prerequisite mission of LMIS is to develop open system for solving the problem of duplicated data management and data sharing and for supporting various computer environments such as hardware, software, network etc. The purpose of LMIS is to reuse the existing investment resources and to expand the existing system resources. Therefore the purpose of this study is to investigate a method of LMIS operation under the existing circumstances and expansion of the system in the future. To do this, Supporting various DBMS, GIS server, Distributing Computing Platform(Unix, NT Server) is needed. Especially LMIS need to be developed as open system with interoperability to get independence of application from various GIS servers.

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