• Title/Summary/Keyword: LIS (Land Information System)

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Correlation Analysis Between Casual and Outcome Factors for Developing Land Information System (토지정보시스템 구축의 영향요인과 성과요인의 상관관계 분석)

  • Choe, Byong Nam;Jin, Heui Chae
    • Spatial Information Research
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    • v.23 no.6
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    • pp.1-8
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    • 2015
  • This study aims to suggest key strategy for successful establishment of LIS (Land Information System). Survey questionnaires on casual and outcome factors for LIS establishment are distributed to the LIS users and developers. Analysis results show that user participation has statistically significant, positive effect on business efficiency, user satisfaction, data sharing and services. Government support and developer technical skill are appeared to be the two important factors for improving the business efficiency and user satisfaction of LIS. Based on such results, this study suggests different strategies for successful development and implementation of LIS, including the definition of users' role and their proactive participation, visionary guide and support by government, cooperative relationship based government support and user participation, sufficient technology for land informatization. This study contributes to systematic organization of situational factors of South Korea's LIS towards its achievements. The results of this study could also be utilized for strengthening global competitiveness of the domestic geospatial information firms, in particular in supporting the development of land information projects in developing countries.

Calculation of Soil Moisture and Evapotranspiration for KLDAS(Korea Land Data Assimilation System) using Hydrometeorological Data Set (수문기상 데이터 세트를 이용한 KLDAS(Korea Land Data Assimilation System)의 토양수분·증발산량 산출)

  • PARK, Gwang-Ha;LEE, Kyung-Tae;KYE, Chang-Woo;YU, Wan-Sik;HWANG, Eui-Ho;KANG, Do-Hyuk
    • Journal of the Korean Association of Geographic Information Studies
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    • v.24 no.4
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    • pp.65-81
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    • 2021
  • In this study, soil moisture and evapotranspiration were calculated throughout South Korea using the Korea Land Data Assimilation System(KLDAS) of the Korea-Land Surface Information System(K-LIS) built on the basis of the Land Information System (LIS). The hydrometeorological data sets used to drive K-LIS and build KLDAS are MERRA-2(Modern-Era Retrospective analysis for Research and Applications, version 2) GDAS(Global Data Assimilation System) and ASOS(Automated Synoptic Observing System) data. Since ASOS is a point-based observation, it was converted into grid data with a spatial resolution of 0.125° for the application of KLDAS(ASOS-S, ASOS-Spatial). After comparing the hydrometeorological data sets applied to KLDAS against the ground-based observation, the mean of R2 ASOS-S, MERRA-2, and GDAS were analyzed as temperature(0.994, 0.967, 0.975), pressure(0.995, 0.940, 0.942), humidity (0.993, 0.895, 0.915), and rainfall(0.897, 0.682, 0.695), respectively. For the hydrologic output comparisons, the mean of R2 was ASOS-S(0.493), MERRA-2(0.56) and GDAS (0.488) in soil moisture, and the mean of R2 was analyzed as ASOS-S(0.473), MERRA-2(0.43) and GDAS(0.615) in evapotranspiration. MERRA-2 and GDAS are quality-controlled data sets using multiple satellite and ground observation data, whereas ASOS-S is grid data using observation data from 103 points. Therefore, it is concluded that the accuracy is lowered due to the error from the distance difference between the observation data. If the more ASOS observation are secured and applied in the future, the less error due to the gridding will be expected with the increased accuracy.

Construction of Land Information System using Three Dimensional Digital Elevation Model Algorithm (3차원 지형모델 알고리즘을 이용한 토지정보체계 구축)

  • Kang, Ho-Yun;Chang, Yong-Ku;Kang, In-Joon
    • Journal of the Korean Association of Geographic Information Studies
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    • v.4 no.3
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    • pp.31-40
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    • 2001
  • Geography Information System is divided to many details fields such as Urban Information System, Land Information System, Military Information System etc. These detailed fields are connected each other and make National Geography Information System. Now Geography Information System is being used in many fields with Urban Information System. And information of all field is being constructed to network for share each other. Now Land Information System(LIS) is being constructed to two dimensional. But LIS can construct and utilize three dimensional geographic data by connecting Geography Information System and this effect will be greatest. Thus, the study of connecting cadastral map and digital terrain map must be continued. Through the study of connecting digital terrain map, the construction and analysis of three dimensional digital elevation model will be able to construct Land Information System effectively. To this study, the authors constructed integrated geographic data by uniting digital terrain map and cadastral map and constructed three dimensional digital elevation model. By connecting cadastral information database, the authors developed three dimensional Integrated Land Information System.

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A Study on the Strategies for Land Information System Development (토지관련 업무의 정보화 추진방안에 관한 연구)

  • 고준환
    • Journal of the Korean Society of Surveying, Geodesy, Photogrammetry and Cartography
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    • v.20 no.1
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    • pp.93-101
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    • 2002
  • By the rapid development of computer technology and the more efficient use of land-related information, Land-related Information System has been developed by the central and local government respectively. The problems of the storage, maintenance and exchange of land-related data will be anticipated. The purpose of this study is to meet the demands of governments and prevent the duplicate investment for the information system. The data sharing and standardization should be achieved for the more efficient land management. The theme of UN's sustainable land management and the future vision of cadastre according to Cadastre 2014 are thoroughly reviewed. The advanced foreign cases of LIS development are studied, too. Linkage among land-related data, the improvement of organizational institution and the training for GIS specialists are suggested as the strategies for the more efficient land-related information system development.

Calculation of Soil Moisture and Evaporation on the Korean Peninsula using NASA LIS(Land Information System) (NASA LIS(Land Information System)을 이용한 한반도의 토양수분·증발산량 산출)

  • PARK, Gwang-Ha;YU, Wan-Sik;HWANG, Eui-Ho;JUNG, Kwan-Sue
    • Journal of the Korean Association of Geographic Information Studies
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    • v.23 no.4
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    • pp.83-100
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    • 2020
  • This study evaluated the accuracy of soil moisture and evapotranspiration by calculating the hydrological parameters in Korean peninsula using Land Information System(LIS) developed by US NASA. We used Noah-MP surface model to calculate hydrological parameters, and used MERRA2(Modern-Era Retrospective analysis for Research and Applications, Version 2) for hydrological forcing data. And, International Geosphere-Biosphere Program(IGBP) and University of Maryland(UMD) land cover maps were applied to compare the output accuracy, and Automated Synoptic Observing System(ASOS) of KMA was used as ground observation data. In order to evaluate the accuracy of the output data, the correlation coefficient(CC), BIAS, and efficiency factor (NSE, Nash-Sutcliffe Efficiency) were analyzed with soil moisture and evapotranspiration by ASOS ground observation data. As a result, the correlation coefficient of soil moisture using IGBP was 0.56 on average, and evapotranspiration was about 0.71. On the other hand, soil moisture using UMD was 0.68 on average and evapotranspiration was about 0.72, and the correlation coefficient by UMD was evaluated as high accuracy compared to the results by using IGBP. The correlation coefficient of soil moisture was an average of 0.68 and evapotranspiration was an average of 0.72 when MERRA2 was used as hydrological forcing data. On the other hand, the soil moisture applied with ASOS was an average of 0.66, and evapotranspiration was an average of 0.72. It is judged that the ASOS point data was reanalyzed as 0.65°× 0.5°grids, which is the same spatial resolution with MERRA2, resulting in differences in accuracy depending on the region.

Position Error Analysis of Digital Map for LIS/GIS Database (LIS/GIS의 D/B구축을 위한 수치지도의 위치오차분석에 관한 연구)

  • 조규전;이영진;홍용현
    • Journal of the Korean Society of Surveying, Geodesy, Photogrammetry and Cartography
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    • v.15 no.1
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    • pp.1-7
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    • 1997
  • In the digital mapping for data base contruction, the positional information is used as an important tool in LIS/GIS(Land Information System/Geographic Information System) that is used for a facility management, urban/cadastral management as well as in spatial analysis. In this paper, for an error analysis of X, Y coordinates data on digital map, test area was classified by topography, density, and slope. The coordinates on topographic map were assumed as true values and they were compared with the coordinates on digital map. A result of the numerical test show that a vector data of line type had more gross error than vector data of polygon type. And, SME(stanadrd mean error) of urban or intermountain area had small values compared to that of suburban area in topography analysis. The SME of dense and middle zone had small values compared to that of loose zone in density analysis. In another slope analysis. the SME of steep of gentle slope had small values compared to that of flatland.

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New Landscape of Poverty Management in Land Information System (토지정보를 이용한 빈곤관리의 모델)

  • Liou, Jae-Ik;Oh, Min-Soo;Shin, Young-Chul
    • Journal of the Korean Association of Geographic Information Studies
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    • v.5 no.1
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    • pp.1-19
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    • 2002
  • Estimation and indication for spatial distribution of living quality and poor condition associated with land and house's access as a basic human need has been imperative questions and predicaments while it is required to boost digital economic development and consolidate social maturity. Although modern IT and sophisticated GIS/LIS technologies are used to examine spatial analysis of population location-patterns, land uses and development, and environmental degradation, etc, it still might remain immature step to figure out the causations and results of poverty in space and time. In this research, a new approach to poverty management is explicated by using 6 parameters as a major tool for assisting poverty monitoring concerning the poor who are very unpredictable in space and could be regarded as renegades in the Internet age. In addition, it expounds a new approach and conceptual idea for poverty management to notify spatial location of the digital divide when poverty reduction is closely concerned with sustainable goal of land information.

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Selection of Hydrologic Factors of NASA LIS for Water Hazrd Information Platform (수재해 정보 플랫폼에 활용 가능한 NASA LIS의 수문인자 선정)

  • PARK, Gwang-Ha;BAECK, Seung Hyub;CHAE, Hyo-Sok;HWANG, Eui-Ho
    • Proceedings of the Korea Water Resources Association Conference
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    • 2017.05a
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    • pp.471-471
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    • 2017
  • 최근 기상 이변으로 인해 홍수, 가뭄 등과 같은 수재해가 빈번히 발생되고 있다. 이에 수재해예방 등의 안전 기술과 관련된 관심이 증가되고 있다. 수재해 예방을 위해서는 먼저 홍수, 가뭄 등과 같은 수재해 감시가 필요하며, 이를 위해 위성, 레이더 등으로 관측된 자료를 활용한 수문인자 정보는 매우 중요하다. 미국 NASA의 LIS(Land Information System)는 위성 및 지상관측 자료를 활용하여 홍수, 가뭄, 기상, 산사태, 농업 등의 정보를 생산할 수 있는 프레임워크이다. LIS는 크게 지표면 모델 및 자료동화를 위한 변수들의 전처리 과정(LDT), 지표면 모델을 활용한 분석 및 자료동화 과정(LDAS) 및 분석된 자료의 검보정(LVT) 과정으로 구성되어 있다. LIS에서 산출 가능한 인자는 Energy Balance, Water Balance, Surface/Subsurface State, Evaporation, Hydrologic, Cold Season Processes, Compared Data, Carbon 등 9개로 분류되며 약 78개의 인자를 산출한다. 홍수, 가뭄 등과 같은 수재해 감시를 위한 수문인자는 강수량, 증발산량, 토양수분, 지표면 온도 등을 비롯한 여러 가지 인자들이 필요하다. LIS는 주로 미국, 캐나다 등 평활한 지역에 활용되어 공간해상도는 약 10km(0.1deg) 이하로 자료를 산출한다. 산악 지형이 대부분인 한국 지형에 적용하기에는 자료의 정확성이 낮아 10km 이상의 공간해상도 자료가 필요하며, 한국형 수재해정보 플랫폼에서 홍수, 가뭄 등의 기초자료로 사용하기 위한 수문인자의 선정이 필요하다. 이에 본 연구에서 NASA LIS를 통해 산출 가능한 인자를 정리하고 한국형 수재해 정보플랫폼에 활용 가능한 수문인자의 항목을 조사하였다. 홍수, 가뭄 등 수재해 분석에 필요한 기초자료는 강우량, 유출량, 잠재적 증발산량, 식생의 증산량, 토양수분, 표면온도, 알베도 등의 수문인자이며, NASA LIS에서 이와 같은 수문인자 산출이 가능하다. NASA와 국제공동 연구중인 한국형 물순환분석 프레임워크(K-LIS(안)) 개발을 통해 한국 지형에 적합한 홍수 및 가뭄 등의 수재해 감시 평가 예측이 가능할 것이며, K-LIS에서 산출되는 고해상도의 수문인자들을 수재해 정보 웹 포털의 정보 제공 서비스를 통하여 손쉽게 접근 가능할 것으로 사료된다.

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Analysis of Hydrologic Parameters of Ungaged Area Using NASA LIS (NASA LIS를 이용한 미계측 지역의 수문인자 산출)

  • PARK, Gwang Ha;HWANG, Eui-Ho;Jung, Kwan Sue
    • Proceedings of the Korea Water Resources Association Conference
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    • 2018.05a
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    • pp.115-122
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    • 2018
  • 수문순환 과정 중 일부인 유출량을 산정하기 위해서는 지형학적 변수, 강우량, 토양수분, 증발산량 등의 인자들이 필요하다. 본 연구에서는 미계측 지역의 유출량 산정을 위한 주요 인자인 토양수분과 증발산량을 지표면 모델을 통해 산출하고자 한다. 사용한 시스템은 미국 NASA에서 개발한 LIS(Land Information System) 프레임워크이며 LIS에 적용된 지표면 모델 중 Noah-MP을 초기 매개변수로 사용하였다. 입력 자료는 전지구 범위로 제공되는 자료를 사용하여 남한 지역을 대상으로 토양수분 및 증발산량을 산출하고 지상 관측 자료, 원격탐사 기반의 토양수분과 증발산량을 통해 정확도를 평가하였고 ASOS 관측 자료를 내삽하여 산출된 토양수분 및 증발산량의 정확도도 평가하였다. 남한 지역을 대상으로 정확도를 평가한 후 대표표적 미계측 지역인 북한을 대상으로 토양수분 및 증발산량을 산출하였다. LIS의 Noah-MP 지표면 모델로 토양수분 및 증발산량을 산출한 결과 ASOS를 내삽하여 산출한 결과가 설마천의 경우 정확도는 오히려 낮아졌고 청미천, 서산의 정확도는 높아졌다. 이는 초기 매개변수 설정을 이용한 것과 전지구 범위의 자료를 사용하여 토양수분 및 증발산량을 산출하여 발생된 오차이며 매개변수 최적화 및 고해상도의 입력자료를 사용하면 보다 높은 정확도를 확보할 수 있다. 이를 통해 미계측 지역에서도 충분히 활용 가능한 토양수분 및 증발산량을 산출하여 유출량을 산정할 수 있을 것으로 사료된다.

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The National Grid Systems for Digital Mapping and GIS/LIS (GIS/LIS와 수치지도용 국가평면좌표계에 관한 연구)

  • 이영진
    • Journal of the Korean Society of Surveying, Geodesy, Photogrammetry and Cartography
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    • v.16 no.2
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    • pp.299-309
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    • 1998
  • The national coordinate system is an essential component for a geographic/land information system, since it provides the spatial reference for expressing position information. The national mapping of Korea has been based on 3-different meridians on the Gauss-Schreiber projection in year 1910s, later this was changed to the Gauss-Kruger projection. Existing map coordinate systems maintaining the national land survey project on 1910s, have some structural shortcomings of unknown computational procedures and projection methods. In this paper, the problems of the map coordinates usage and of longitudes origin shift(10.405") and their solutions are investigated. Also, this study discusses the issues involved in choosing coordinate system for digital mapping and their applications as a basis for spatial data management. The foreign country's coordinate systems are reviewed and the elements to realize a new unified grid coordinate system is proposed. The Transverse Mercator projection with a central meridian of $127^\circ\;30'$, scale factor 0.9996, and GRS80 ellipsoid, is selected in Korean peninsula.sula.

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