• Title/Summary/Keyword: 수치표고모형

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A Preliminary Study for Implementation of Digital Geographic Information in Non-Urban Area (비도시지역 디지털 지리정보 구축을 위한 기초연구)

  • Kim, Jae-Myeong;Choi, Yun-Soo;Seo, Chang-Wan;Cho, Han-Keun
    • Spatial Information Research
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    • v.18 no.5
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    • pp.63-74
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    • 2010
  • The construction of digital geographic information of Non-Urban Area have been needed to build a nationwide information infrastructure for the balanced development of nation to reduce a gap between city and Non-Urban Area due to the emphasis on a large scale digital map (1/1,000) implementation for cities. In this research, we researched the basic long-term blueprint for establishing digital geographic information in non-urban area. From the proposed institutional foundation, we want to build this information for Non-Urban Areas and to make a long-term plan to strengthen the national com petitiveness dealing with the globalization, liberalization, and information based on the digital geographic information in non-urban area. This study suggested 3 alternatives to implement digital geographic information of Non-Urban Area as follow. Firstly central government fund whole cost, secondly central government and local government fund a cost half and half, lastly combining first and second alternative. This study can be a basis on building national information infrastructure, provide core information for national projects and revitalize the use of spatial information for Non-Urban Area.

A Study on the Improvements of Positioning Accuracy of Digital Elevation Model Using SPOT Satellite Triplet Images (SPOT 3중 입체위성영상을 이용한 수치표고모형의 정확도 개선)

  • Cho, Bong-Whan;Lee, Yong-Woong;Shin, Dae-Shik
    • Journal of Korean Society for Geospatial Information Science
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    • v.3 no.1 s.5
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    • pp.55-66
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    • 1995
  • Most studies using satellite images have been performed to determine three dimensional positioning by stereoscopic analysis for stereo-pair or to extract digital elevation model by stereo matching using image correlation techniques. Because the small errors on the ground control points have a great impact on the results, however, it is hard to get reliable products when we analyze satellite orbital parameters or acquire digital elevation model by using only stereo-pair. Also, if there are noises, shadows, or clouds on the one of stereo pair, it is difficult to produce DEM(digital elevation model) on the area under analysis or to have good accuracy. In these case, it can be solved by systematic analysis of the multiple stereo images. This paper suggests the improvements on the accuracy of the digital elevation model by the developments of stereoscopic analysis techniques for the triplet of SPOT satellite images on the same area.

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Umyeon Mountain Debris Flow Movement Analysis Using Random Walk Model (Random Walk Model을 활용한 우면산 토석류 거동 분석)

  • Kim, Gihong;Won, Sangyeon;Mo, Sehwan
    • Journal of the Korean Society of Surveying, Geodesy, Photogrammetry and Cartography
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    • v.32 no.5
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    • pp.515-525
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    • 2014
  • Recently, because of increasing in downpour and typhoon, which are caused by climate changes, those sedimentation disasters, such as landslide and debris flow, have become frequent. Those sedimentation disasters take place in natural slope. In order to predict debris flow damage range within wide area, the response model is more appropriate than numerical analysis. However, to make a prediction using Random Walk Model, the regional parameters is needed to be decided, since the regional environments conditions are not always same. This random Walk Model is a probability model with easy calculation method, and simplified slope factor. The objective of this study is to calculate the optimal parameters of Random Walk Model for Umyeon mountain in Seoul, where the large debris flow has occurred in 2011. Debris flow initiation zones and sedimentation zones were extracted through field survey, aerial photograph and visual reading of debris flow before and after its occurrence via LiDAR DEM.

A Study on Utilization Plan of Nangido Landfill Using Digital Elevation Model (수치표고모형을 이용한 난지도 쓰레기 매립장의 이용계획에 관한 연구)

  • 이재기;조재호;이현직;이인성
    • Journal of the Korean Society of Surveying, Geodesy, Photogrammetry and Cartography
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    • v.11 no.1
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    • pp.19-27
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    • 1993
  • For the design of a large-scale landfill, the future utilization plan of the landfill ought to precede based on the analysis of existing facility. Analysis for the present condition of reclamation must include accurate assesment of volume and other consideration such as urban scenery. In this study an optimum data interpolation scheme area/volume determination method based on the classification of topography were combined for the correct assessment of sweeping volume. Combined model was compared with the real data of Digital Elevation Model constructed by aero photography. The new model aims at providing basic information for the design and utilization of a new landfill. A a result of this study, we made an algorithm to perform the classification of the topography in the area of interest objectively. In addition, we decided optimal data interpolation scheme and area/volume calculation method for given topography. Finally, we applied the developed methodology to Nangido Landfill to assess current landfill situation and potential capacity when landfilling is resumed.

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Topographic Mapping using SAR Interferometry Method (레이다 간섭기법(SAR Interferometry)을 이용한 지형도 제작)

  • Jeong, Do-Chan;Kim, Byung-Guk
    • 한국공간정보시스템학회:학술대회논문집
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    • 2000.06a
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    • pp.67-76
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    • 2000
  • Recently, SAR Interferometry method is actively being studied as a new technic in topographic mapping using satellite imageries. it extract height values using two SAR imageries covering same areas. Unlike when using SPOT imageries, it isn't affected by atmospheric conditions and time. But it is difficult to process radar imageries and the height accuracy is very low where relief displacements are high. In this study, we produced DEM(Digital Elevation Model) using ERS-1, ERS-2 tandem data and analysed the height accuracy over 14 ground control points. The mean error in height was 14.06m. But when using airborne SAR data, it Is expected that we can produce more accurate DEM which will be able to ue used in updating 1/10,000 or 1/25,000 map.

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Combination of GPS, Echo Sounder and GIS for Constructing 3D Riverbed Surveying System (3차원 하상측량시스템 구현을 위한 GPS와 음향측심기 및 GIS의 조합)

  • Lee, Jin-Duk;Kim, Hyun-Ho
    • The Journal of the Korea Contents Association
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    • v.7 no.11
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    • pp.232-238
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    • 2007
  • In this research, we constructed a 3D riverbed surveying system that is able to acquire the topographical information of a riverbed in real-time. The system consists of a RTK-GPS receiver and a echo sounder for collecting simultaneously the position and the water depth information of riverbed. A program for data composition and transformation was designed to generate the 3D coordinates by combining data of a GPS receiver and a echo sounder and made GIS database construction easy. We extracted TIN, digital elevation model and cross sectional maps of the riverbed by using GIS software from 3D data constructed through test surveying. It was shown that the accuracy of the result was RMS error of 0.069m when compared with the existing methods which use a total station and staffs. It is expected that the 3D riverbed surveying system wiil be able to be utilized to various surveying for water resources management in rivers, sea, dams, storing reservoirs and so forth.

Quantitative Estimation of Shoreline Changes Using Multi-sensor Datasets: A Case Study for Bangamoeri Beaches (다중센서를 이용한 해안선의 정량적 변화 추정: 방아머리 해빈을 중심으로)

  • Yun, Kong-Hyun;Song, Yeong Sun
    • Korean Journal of Remote Sensing
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    • v.35 no.5_1
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    • pp.693-703
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    • 2019
  • Long-term coastal topographical data is critical for analyzing temporal and spatial changes in shorelines. Especially understanding the change trends is essential for future coastal management. For this research, in the data preparation, we obtained digital aerial images, terrestrial laser scanning data and UAV images in the year of 2009. 2018 and 2019 respectively. Also tidal observation data obtained by the Korea Hydrographic and Oceanographic Agency were used for Bangamoeri beach located in Ansan, Gyeonggi-do. In the process of it, we applied the photogrammetric technique to extract the coastline of 4.40 m from the stereo images of 2009 by stereoscopic viewing. In 2018, digital elevation model was generated by using the raw data obtained from the laser scanner and the corresponding shoreline was semi-automatically extracted. In 2019, a digital elevation model was generated from the drone images to extract the coastline. Finally the change rate of shorelines was calculated using Digital Shoreline Analysis System. Also qualitative analysis was presented.

Estimating the Application Possibility of High-resolution Satellite Image for Update and Revision of Digital Map (수치지도의 수정 및 갱신을 위한 고해상도 위성영상의 적용 가능성 평가)

  • 강준묵;이철희;이형석
    • Journal of the Korean Society of Surveying, Geodesy, Photogrammetry and Cartography
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    • v.20 no.3
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    • pp.313-321
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    • 2002
  • Supplying high-resolution satellite image, we take much interest in the update and the revision of digital map and thematic map based on the satellite image. This study presented the possibility of the update and the revision to the existing digital map on a scale of l/5,000 and 1/25,000 to take advantage of the IKONOS satellite image. We performed geometric correction to make use of the ground control points of the existing digital map in IKONOS mono-image and created ortho-image by extracting digital elevation model from three dimensional contour data and altitude on the existing digital map. We revised changed features in the method of screen digitizing by overlapping orthorectified satellite image and existing digital map and flawed features of the unchanged area on the satellite images for positional accuracy analysis. As a result, rectification error is calculated at $\pm$3.35m by RMSE. There is a good possibility of update of digital map under the scale of 1/10,000. It is possible to the update of the large scale digital map over the scale of l/5,000, as if we used the method of stereo image and ground control point surveying.

Analysis of Debris Flow Damaged Areas Considering Drainage Facilities (배수시설을 고려한 토석류 피해지 분석)

  • Bae Dong Kang;Kye Won Jun;Chang Deok Jang;Hang Il Jo
    • Proceedings of the Korea Water Resources Association Conference
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    • 2023.05a
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    • pp.140-140
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    • 2023
  • 전 세계적인 기후변화로 인해 태풍과 집중호우의 발생빈도와 규모가 지속적으로 증가하고 있다. 이러한 태풍과 집중호우는 국토의 64%가 산지로 이루어져 있는 우리나라에서 토석류 재해를 발생시켜 하류부에 많은 피해를 입힌다. 토석류는 계곡을 따라 흐르는 특성을 가지고 있어 콘크리트 사방댐, 슬릿트형 사방댐과 같은 횡단구조물과 기슭막이와 같은 종단구조물의 설치는 토석류피해 저감에 매우 유효하게 작용하고 있다. 따라서 토석류 재해의 발생 위험이 높은 유역에서의 토사유출량의 예측과 재해저감시설의 규모와 형상, 위치 설정은 토석류 피해를 예방하기 위한 중요한 요소이다. 본 연구에서는 2019년 10월 토석류 재해가 발생한 지역의 피해를 분석하기 위해 2차원 수치모형인 Hyper KANAKO 모형을 이용하였으며, 해당 지역의 수치지형도를 이용하여 수치표고모델(DEM)과 토석류 피해를 저감하기 위한 배수시설을 고려한 지형자료를 제작하였다. 그리고 모형의 주요 입력변수인 첨두유량은 토석류 피해가 발생하였을 때의 강우 자료와 현장조사 자료를 이용하여 산정하였다. Hyper KANAKO 모형의 결과로 나타나는 확산범위, 퇴적량 등을 분석하여 배수시설의 유무에 따른 토석류 피해 저감효과를 분석하였다.

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GRID-based Daily Evapotranspiration Prediction Model (GRIDET) (격자기반의 일 증발산량 추정모형 개발)

  • Chae, Hyo-Seok;Kim, Seong-Jun;Jeong, Gwan-Su
    • Journal of Korea Water Resources Association
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    • v.32 no.6
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    • pp.721-730
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    • 1999
  • A Grid-based daily evapotranspiration(ET) prediction model which calculates temporal and spatial ET with a complementary relationship of Morton(1983) was developed. The model was programmed by C-language and uses ASCII formatted map data of DEM(Digital Elevation Model) and land use. Daily ET within the watershed is calculated and the results of temporal variations and spatial distributions of ET are presented by using GRASS(Geographic Resources Analysis Support System). To verify the applicability of the model, it was applied to the part of Bocheong stream basin (76.5$\textrm{km}^2$) located in the upstream of Dacheong Dam watershed. The result shows that the estimated evapotranspiration in 1995 was 766.1mm and 22% increased after correction radiation for slope and area.

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