• Title/Summary/Keyword: 좌표계 변환

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Coordinate Transformation of the Cadastral Maps with Different Surveying Origins for Utilization in GIS (GIS 활용을 위한 기타원점 좌표계 지적자료의 좌표변환에 관한 연구 - 경기도 오산시를 대상으로 -)

  • 이권한;서관호;정해철
    • Spatial Information Research
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    • v.11 no.4
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    • pp.481-491
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    • 2003
  • This study aims at generating a continuous map by coordinates transformation between cadastral maps with different surveying origins. The continuous cadastral map is useful in various fields of GIS. For this purpose, an experimental study was conducted at Osan-Si, Kyonggi Province in cooperation with related institutions. In this study, three control point zone, large, medium, and small zone were to!;ted. For each control point, the currently used data were compared with the data at the surveyed time. About coordinate transformation method, we tested Helmert, Affine, and Polynomial methods which are the most representative among 2-dimensional coordinate transformations. These three transformation methods were evaluated according to variation of transformed parcel shape and agreement with neighboring areas. As the result of the evaluation, Affine transformation in large zone is the most appropriate coordinate transformation method fer Osan-Si.

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Camera Model for Surface Image Velocimeter (표면영상유속계를 위한 카메라 모형의 구성)

  • Lee, Han Seung;Yu, Kwonkyu;Hwang, Jeong-Geun
    • Proceedings of the Korea Water Resources Association Conference
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    • 2016.05a
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    • pp.107-107
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    • 2016
  • 표면영상유속계는 영상분석을 이용하여 홍수시 하천 수표면 유속을 측정하는 비접촉식 유속측정장치이다. 때문에 안전하고 편하게 홍수시 유속을 측정할 수 있으나, 이를 위해서는 영상과 실세계와의 좌표변환을 위한 참조점 측량이 반드시 필요하였다. 좌표 변환에 8-변수 사영변환을 이용할 경우 최소한 4개의 참조점이 필요하다. 그러나 홍수시 참조점 측량은 불가능에 가까우며, 홍수전후의 측량도 매우 번거로운 일이다. 본 연구에서는 참조점을 이용하지 않고, 좌표변환 관계를 구성할 수 있는 카메라 모형(camera model)을 구성하였다. 여기서 카메라 모형은 실세계 좌표(world coordinates)를 영상좌표(image coordinates)로 변환해 주는 관계를 말한다. 이 카메라 모형에 필요한 외부 변수는 하천수표면과 카메라와의 높이 및 카메라의 두 가지 경사각뿐이다. 여기에 일반적인 카메라 보정에 이용하는 방법으로 구한 카메라 내부 변수를 결합하면 된다. 이 모형은 표면영상유속계 장비로 스마트폰을 이용할 때 간편하게 적용할 수 있으며, 별도의 경사계만 부착하면 일반적인 CCTV나 캠코더를 이용할 때도 적용할 수 있다. 이 카메라 모형과 종래 사용하던 8-변수 사영변환에 의한 좌표변환관계를 비교한 결과 상호간 오차가 거의 없이 적용할 수 있었다. 또한, 스마트폰 표면영상유속계와 열영상 표면영상유속계에 적용한 결과 종전보다 훨씬 적용이 간편하며, 정확도 또한 거의 차이가 없이 적용할 수 있었다.

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Software Development for Coordinates Conversion Using Open Source (개방형 라이브러리를 이용한 좌표변환 소프트웨어 개발)

  • Kim, Eui-Myoung;Song, Yeong-Sun;Jo, Hyun-Gee
    • Journal of Korean Society for Geospatial Information Science
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    • v.17 no.4
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    • pp.3-11
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    • 2009
  • Open source is recently much more made and distributed by on-line such as internet in various fields. Therefore, end users could rapidly develop applications needed for some purposes using minimal efforts if use open sources. But, open source must be customized for their purposes. In this paper, we developed software for coordinates conversion and compared the software with NGI Pro which is developed by National Geographic Information Institute. Consequently, it is possible for us to easily develop the coordinates conversion module and we know that the use of open source is effective to develop various applications.

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Summarized Reviews on Geodetic Coordinate System and Map Projection for Practitioners in Exploration Geophysics (물리탐사 실무자를 위한 측지 좌표계와 지도 투영의 이해)

  • Lee, Seong Kon
    • Geophysics and Geophysical Exploration
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    • v.19 no.4
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    • pp.236-248
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    • 2016
  • In this review, the basic concepts of geodetic coordinate system and map projection are explained to practitioners in exploration geophysicists to enhance the understanding of geographic and projected coordinate system. The fundamental elements such as earth ellipsoid, geoid, geocentric and geodetic latitudes, rhumb line, and great circle are dealt with in detail. The geocentric and geodetic coordinate systems are also summarized neatly, together with coordinate conversion formulae. In addition, the concept and technique for datum transforms between local and world datum are presented, with special emphasis on Korean Geodetic System.

Transformation UIS DB and Determination of Coordinates Transformation Coefficients for Wonju City with Translation of Nation Geodetic Datum (국가측지좌표계 전환에 따른 변환계수 결정 및 도시기반정보 데이터베이스 변환 -원주시를 대상으로-)

  • Lee, Hyun-Jik;Ru, Ji-Ho
    • Journal of the Korean Society of Surveying, Geodesy, Photogrammetry and Cartography
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    • v.25 no.2
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    • pp.141-148
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    • 2007
  • With the use of world geodetic system, the UIS DB of WonJu City, which was established on Korea coordinate system becomes to face the need of coordinates transformation. However, the UIS DB of Wonju City is based on dualistic control points of Korea geodetic system, which means the coordinates system is not standardized. Therefore it is required to establish a plan for transformation into world geodetic system. For this purpose, we calculated coordinate transformation coefficients per control point data of Korea geodetic system and verified the accuracy of transformation coefficients. Through the process, we propose a plan for transforming the coordinate system of UIS DB in WonJu City, which has been based on dualistic control point data of Korea geodetic system, efficiently into the world geodetic system.

Improved National Datum Transformation Parameters of South Korea (국가좌표계 변환요소의 개선)

  • 이영진
    • Journal of the Korean Society of Surveying, Geodesy, Photogrammetry and Cartography
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    • v.16 no.1
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    • pp.95-101
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    • 1998
  • In this paper, the historical coordinates data of origin SUWON are reviewed and determination procedures are explained with the three dimensional geocentric coordinates of ITRF94 that is determined using VLBI observations. Also three translation parameters are calculated on the origin point. The national transformation parameters between the Korean geodetic system and Korean Terrestrial Reference Frame 1994(KTRF94) system, are determined using least square methods with weigted parameter constraints. The results of transformation show that one set of parameters are applicable to fixing of a position for GPS relative positioning processing and to adjusting of a network for three dimensional geocentric coordinates(KTRF94) computing.

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National Datum Transformation Parameters of South Korea Using Weighted Parameter Constraints (가중변수법에 의한 국가좌표계 변환요소의 산정)

  • 이영진
    • Journal of the Korean Society of Surveying, Geodesy, Photogrammetry and Cartography
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    • v.15 no.1
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    • pp.29-39
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    • 1997
  • The need of transformation parameters from local geodetic datums to a geocentric coordinate system is becoming more common, with the increasing application of satellite positioning techniques to LIS/GIS survey with cadastral management. In this paper, the national transformation parameters between the Korean geodetic coordinates which is based on the Bessel 1841 ellipsoid and the WGS84 ellipsoid are determined by the least square methods with weighted parameter constraints. Three-dimensional geocentric coordinates are based on GPS observation at 31 stations in the geodetic network, the datum parameters are computed within a standard deviation of less than 1 meter. In South Korea, the national transformation parameters with Bessel geoid-heights are useful for GPS baseline processing and for middle-scale map/database transformation.

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A Study on the Coordinates System Transformation of Railway Control Point (철도기준점 좌표계 변환에 관한 연구)

  • Moon, Cheung-Kyun;Park, Soo-Bum;Kim, Jong-Suk;Heo, Joon
    • 한국공간정보시스템학회:학술대회논문집
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    • 2007.06a
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    • pp.385-389
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    • 2007
  • 철도측량 및 철도현황측량에 있어 기본이 되는 철도기준점은 과거 국가삼각점을 이용한 지역(동경)좌표계에서 조정 되었다. 세계좌표계로의 전환을 결정한 건교부 지침에 의해 기존의 지역좌표계 성과는 모두 세계좌표계로 전환되어야 하며, 이를 위해 본 연구는 철도기준점의 좌표계 변환방법에 대한 기준을 마련하고자 하였다. 다양한 분석결과 GPS상시관측소 데이터를 활용하는 것이 가장 적절한 대안으로 분석 되었으며, 각 관측 지점의 좌표를 상시관측소의 수를 달리하여 분석한 결과 상시관측소 1,2개소를 연결한 것 보다 3개소 이상의 관측소를 사용한 것이 예상대로 좀 더 정밀한 결과 값을 얻을 수 있었다.

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Optimal National Coordinate System Transform Model using National Control Point Network Adjustment Results (국가지준점 망조정 성과를 활용한 최적 국가 좌표계 변환 모델 결정)

  • Song, Dong-Seob;Jang, Eun-Seok;Kim, Tae-Woo;Yun, Hong-Sic
    • Journal of the Korean Society of Surveying, Geodesy, Photogrammetry and Cartography
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    • v.25 no.6_2
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    • pp.613-623
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    • 2007
  • The main purpose of this study is to investigate the coordinate transformation based on two different systems between local geodetic datum(tokyo datum) and international geocentric datum(new Korea geodetic datum). For this purpose, three methods were used to determine seven parameters as follows: Bursa-Wolf model, Molodensky-Badekas model, and Veis model. Also, we adopted multiple regression equation method to convert from Tokyo datum to KTRF. We used 935 control points as a common points and applied gross error analysis for detecting the outlier among those control points. The coordinate transformation was carried out using similarity transformation applied the obtained seven parameters and the precision of transformed coordinate was evaluated about 9,917 third or forth order control points. From these results, it was found that Bursa-Wolf model and Molodensky-Badekas model are more suitable than other for the determination of transformation parameters in Korea. And, transforming accuracy using MRE is lower than other similarity transformation model.

The Study on Coordinate Transformation of the Tracking Radar in NARO Space Center (나로우주센터 추적레이더의 좌표 변환에 관한 연구)

  • Shin, Han-Seop;Choi, Jee-Hwan;Kim, Dae-Oh;Kim, Tae-Hyung
    • Aerospace Engineering and Technology
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    • v.10 no.1
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    • pp.116-121
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    • 2011
  • The tracking radar systems in NARO space center are used in order to acquire the TSPI (Time, Space, and Position Information) data of the launch vehicle. The tracking radar produce the measurements of tracked targets in the radar-centered coordinate system. When the tracking radar is in the Cartesian/Polar tracking mode, the state vector data is sent in radar-centered Cartesian/Polar coordinate system to RCC. RCC also send the slaving data in Test Range coordinate system to the tracking radar. So, the tracking radars have to transform the slaving data in Test Range coordinate system into in radar-centered coordinate system. In this study, we described the coordinate transformation between radar-centered coordinate system and Test Range coordinated system.