• 제목/요약/키워드: Satellite Imagery

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고해상도 다중시기 위성영상을 이용한 밭작물 분류: 마늘/양파 재배지 사례연구 (Field Crop Classification Using Multi-Temporal High-Resolution Satellite Imagery: A Case Study on Garlic/Onion Field)

  • 유희영;이경도;나상일;박찬원;박노욱
    • 대한원격탐사학회지
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    • 제33권5_2호
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    • pp.621-630
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    • 2017
  • 이 논문에서는 고해상도 다중시기 위성영상을 이용한 밭작물 재배지 분류 가능성을 확인하기 위해 마늘과 양파 주산지를 대상으로 분류를 수행하였다. 마늘과 양파의 생육주기에 맞춰 영상을 수집하고 단일시기와 다양한 다중시기 자료의 조합으로 분류를 시도하였다. 단일시기 자료의 경우 파종이 모두 끝난 시기인 12월과 작물이 활발히 자라기 시작하는 3월 영상을 이용하였을 때 높은 분류 정확도를 보였다. 한편, 단일시기 자료 보다는 다중시기 자료를 이용하였을 때 더 높은 분류 정확도를 보였는데 자료의 수가 많은 것이 무조건 높은 분류 정확도를 반영하지는 않았다. 오히려 파종 시기 또는 파종 직후의 영상은 분류 정확도를 떨어뜨리는 역할을 하였고 마늘과 양파의 성장기인 3, 4, 5월 영상을 동시에 이용하여 분류하였을 때 가장 높은 분류 정확도를 얻었다. 따라서, 다중시기 위성영상을 이용하여 마늘과 양파를 분류하기 위해서는 작물 주요 성장기의 영상 확보가 매우 중요하다는 것을 확인할 수 있었다.

천리안 위성 적외영상 자료를 이용한 태풍강풍반경의 산출 (An Estimation of the of Tropical Cyclone Size Using COMS Infrared Imagery)

  • 이윤경;권민호
    • 대기
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    • 제25권3호
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    • pp.569-573
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    • 2015
  • An algorithm to symmetric radius of $15ms^{-1}$ isotaches of tropical cyclones is suggested using infrared (IR) imagery of geostationary satellite. It is assumed that symmetric tangential winds outside the maximum winds exponentially decrease with the radial distances of the tropical cyclone, which has a clear eye-wall structure. Four parameters for estimation of the tropical cyclone size are center location, maximum sustained wind, radius of the maximum wind, and relaxation coefficient for the decreasing rate with distances of the tropical cyclone. The estimation results are limitedly verified as comparing to surface winds of polar orbiting satellite such as ASCAT data.

EVALUATION OF SPATIAL SOIL LOSS USING THE LAND USE INFORMATION OF QUICKBIRD SATELLITE IMAGERY

  • Lee, Mi-Seon;Park, Jong-Yoon;Jung, In-Kyun;Kim, Seong-Joon
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2007년도 Proceedings of ISRS 2007
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    • pp.274-277
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    • 2007
  • This study is to estimate the spatial distribution of soil loss using the land use data produced from QuickBird satellite imagery. For a small agricultural watershed (1.16 $km^2$) located in the upstream of Gyeongan-cheon watershed, a precise agricultural land use map were prepared using QuickBird satellite image of April 5 of 2003. RUSLE (Revised Universal Soil Loss Equation) was adopted for soil loss estimation. The data (DEM, soil and land use) for the RUSLE were prepared for 5 m and 30 m spatial resolution. The results were compared with each other and the result of 30 m Landsat land use data.

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고해상도 정사위성영상을 이용한 임상도 수정에 관한 연구 (A Study of on the Forest Map Update Using Orthorecified High Resolution Satellite Imagery Data)

  • 성천경;조정호
    • 한국GIS학회:학술대회논문집
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    • 한국GIS학회 2004년도 GIS/RS 공동 춘계학술대회 논문집
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    • pp.571-577
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    • 2004
  • 다중분광 해상도를 가진 고해상도 위성영상의 이용으로 인해, 임상도 제작 부분에 있어 기존 전통적인 방법의 단점을 보완할 수 있어 고해상도 위성영상을 이용함으로써 효과적으로 임상도 수정이 이루어질 것으로 판단된다 본 연구에서는 1m 공간해상도와 4밴드의 분광해상도를 가진 고해상도 인공위성 영상 데이터를 이용하여 제작된 임상도에 있어 일부 수정 부분이 가능하였다. 따라서 고해상도 위성영상이 차후 효과적인 임상도 수정에 사용될 수 있으리라 판단된다.

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Digital Plotting with KOMPSAT-1 EOC Stereo Images using Digital Photogrammetric Workstation

  • Jeong, Soo;Kim, Youn-Soo;Lee, Ho-Nam
    • 대한원격탐사학회지
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    • 제18권1호
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    • pp.25-33
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    • 2002
  • In 1799, Korea has become a country that holds Earth observation satellite in orbit as they had succeeded in the launch of KOPMSAT-1, the first Korean Earth observation satellite for the practical purpose. For the wide application of the satellite imagery, various application techniques are required, and topographic mapping is essential technique for the application in various fields. Moreover, considering that the main mission of the KOMPSAT-1 is to provide the satellite imagery for the mapping of Korean peninsula, the topographic mapping using KOMPSAT-1 EOC imagery is very significant. In this paper, we showed the possibility of digital plotting using KOMPSAT-1 EOC stereo images to produce topographic map. For the purpose, we implemented experimental stereo plotting using digital photogrammetric workstation and analyzed the procedure. As a result of this paper, we showed that some elements consist in 1:25,000 scale map can be plotted from KOMPSAT-1 Stereo images.

SPOT 영상(映像)을 이용(利用)한 3차원(次元) 위치결정(位置決定)에 있어서 정오차(定誤差) 보정(補正)에 관한 연구(研究) (The Correction of Systemetic Error of Three Dimensional Positioning using SPOT Imagery)

  • 유복모;정영동;이현직
    • 대한토목학회논문집
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    • 제12권4_1호
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    • pp.121-128
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    • 1992
  • 본 연구는 SPOT 위성영상에서 존재하는 정오차요소를 조정체계에 유의한 부가매개변수를 도입하여 보정하는 자체검정 광속조정의 알고리즘을 확립하고 SPOT 위성영상의 자료형태에 유의한 부가매개 변수항을 제시하는데 목적이 있다. 본 연구 결과, SPOT 위성영상용 자체검정 광속정법 알고리즘을 확립하고 프로그램을 개발하였으며, 부가매개변수의 결정력 검토 및 유의성검정을 통해 각 자료형태의 정오차 보정에 유의한 부가매개변수항을 결정할 수 있었다. 또한, 본 연구를 통해 확립된 SPOT 위성영상의 자체검정 광속조정 알고리즘은 위치결정의 정화도 향상에 유용함을 알 수 있었다.

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Land Suitability Analysis using GIS and Satellite Imagery

  • Yoo, Hwan-Hee;Kim, Seong-Sam;Ochirbae, Sukhee;Cho, Eun-Rae;Park, Hong-Gi
    • 한국측량학회지
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    • 제25권6_1호
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    • pp.499-505
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    • 2007
  • A method of improving the correctness and confidence in land use classification as well as urban spatial structure analysis of local governments using GIS and satellite imagery is suggested. This study also compares and analyzes LSAS (Land Suitability Assessment System) results using two approaches-LSAS with priority classification, and LSAS using standard estimation factors without priority classification. The conclusions that can be drawn from this study are as follows. First, a method of maintaining up-to-date local government data by updating the LSAS database using high-resolution satellite imagery is suggested. Second, to formulate a scientific and reasonable land use plan from the viewpoint of territory development and urban management, a method of simultaneously processing the two described approaches is suggested. Finally, LSAS was constructed by using varieties of land information such as the cadastral map, the digital topographic map, varieties of thematic maps, and official land price data, and expects to utilize urban management plan establishment widely and effectively through regular data updating and problem resolution of data accuracy.

An Open Standard-based Terrain Tile Production Chain for Geo-referenced Simulation

  • Yoo, Byoung-Hyun
    • 대한원격탐사학회지
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    • 제24권5호
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    • pp.497-506
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    • 2008
  • The needs for digital models of real environment such as 3D terrain or cyber city model are increasing. Most of applications related with modeling and simulation require virtual environment constructed from geospatial information of real world in order to guarantee reliability and accuracy of the simulation. The most fundamental data for building virtual environment, terrain elevation and orthogonal imagery is acquired from optical sensor of satellite or airplane. Providing interoperable and reusable digital model is important to promote practical application of high-resolution satellite imagery. This paper presents the new research regarding representation of geospatial information, especially for 3D shape and appearance of virtual terrain. and describe framework for constructing real-time 3D model of large terrain based on high-resolution satellite imagery. It provides infrastructure of 3D simulation with geographical context. Web architecture, XML language and open protocols to build a standard based 3D terrain are presented. Details of standard-based approach for providing infrastructure of real-time 3D simulation using high-resolution satellite imagery are also presented. This work would facilitate interchange and interoperability across diverse systems and be usable by governments, industry scientists and general public.

Landsat NBR지수를 이용한 대형산불 피해지 구분 및 피해강도의 정량적 분석 (An Quantitative Analysis of Severity Classification and Burn Severity At the targe-fire Areas Using NBR Index of Landsat Imagery)

  • 원명수;구교상;이명보
    • 한국방재학회:학술대회논문집
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    • 한국방재학회 2007년도 정기총회 및 학술발표대회
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    • pp.231-237
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    • 2007
  • To monitor process of vegetation rehabilitation at the damaged area after large-fire is required a lot of manpowers and budgets. However the analysis of vegetation recovery using satellite imagery can be obtaining rapid and objective result remotely in the large damaged area. Space and airbone sensors have been used to map area burned, assess characteristics of active fires, and characterize post-fire ecological effects. Burn severity incorporates both short- and long-term post-fire effects on the local and regional environment. Burn severity is defined by the degree to which an ecosystem has changed owing to the fire. To classify fire damaged area and analyze burn severity of Samcheok fire area occurred in 2000, Cheongyang fire 2002, and Yangyang fire 2005 was utilized Landsat TM and ETM+ imagery. Therefore the objective of the present paper is to quantitatively classify fire damaged area and analyze burn severity using normalized burn index(NBR) of pre- and post-fire's Landsat satellite imagery.

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Analysis of Land Cover Changes Based on Classification Result Using PlanetScope Satellite Imagery

  • Yoon, Byunghyun;Choi, Jaewan
    • 대한원격탐사학회지
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    • 제34권4호
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    • pp.671-680
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    • 2018
  • Compared to the imagery produced by traditional satellites, PlanetScope satellite imagery has made it possible to easily capture remotely-sensed imagery every day through dozens or even hundreds of satellites on a relatively small budget. This study aimed to detect changed areas and update a land cover map using a PlanetScope image. To generate a classification map, pixel-based Random Forest (RF) classification was performed by using additional features, such as the Normalized Difference Water Index (NDWI) and the Normalized Difference Vegetation Index (NDVI). The classification result was converted to vector data and compared with the existing land cover map to estimate the changed area. To estimate the accuracy and trends of the changed area, the quantitative quality of the supervised classification result using the PlanetScope image was evaluated first. In addition, the patterns of the changed area that corresponded to the classification result were analyzed using the PlanetScope satellite image. Experimental results found that the PlanetScope image can be used to effectively to detect changed areas on large-scale land cover maps, and supervised classification results can update the changed areas.