• 제목/요약/키워드: Orthoimage

검색결과 83건 처리시간 0.026초

Land Cover Classification with High Spatial Resolution Using Orthoimage and DSM Based on Fixed-Wing UAV

  • Kim, Gu Hyeok;Choi, Jae Wan
    • 한국측량학회지
    • /
    • 제35권1호
    • /
    • pp.1-10
    • /
    • 2017
  • An UAV (Unmanned Aerial Vehicle) is a flight system that is designed to conduct missions without a pilot. Compared to traditional airborne-based photogrammetry, UAV-based photogrammetry is inexpensive and can obtain high-spatial resolution data quickly. In this study, we aimed to classify the land cover using high-spatial resolution images obtained using a UAV. An RGB camera was used to obtain high-spatial resolution orthoimage. For accurate classification, multispectral image about same areas were obtained using a multispectral sensor. A DSM (Digital Surface Model) and a modified NDVI (Normalized Difference Vegetation Index) were generated using images obtained using the RGB camera and multispectral sensor. Pixel-based classification was performed for twelve classes by using the RF (Random Forest) method. The classification accuracy was evaluated based on the error matrix, and it was confirmed that the proposed method effectively classified the area compared to supervised classification using only the RGB image.

ORTHORECTIFICATION OF A DIGITAL AERIAL IMAGE USING LIDAR-DRIVEN ELEVATION INFORMATION

  • Yoon, Jong-Suk
    • 대한원격탐사학회:학술대회논문집
    • /
    • 대한원격탐사학회 2008년도 International Symposium on Remote Sensing
    • /
    • pp.181-184
    • /
    • 2008
  • The quality of orthoimages mainly depends on the elevation information and exterior orientation (EO) parameters. Since LiDAR data directly provides the elevation information over the earth's surface including buildings and trees, the concept of true orthorectification has been rapidly developed and implemented. If a LiDAR-driven digital surface model (DSM) is used for orthorectification, the displacements caused by trees and buildings are effectively removed when compared with the conventional orthoimages processed with a digital elevation model (DEM). This study sequentially utilized LiDAR data to generate orthorectified digital aerial images. Experimental orthoimages were produced using DTM and DSM. For the preparation of orthorectification, EO components, one of the inputs for orthorectification, were adjusted with the ground control points (GCPs) collected from the LiDAR point data, and the ground points were extracted by a filtering method. The orthoimage generated by DSM corresponded more closely to non-ground LiDAR points than the orthoimage produced by DTM.

  • PDF

Block Adjustment and Orthorectification for Multi-Orbit Satellite Images

  • Chen, Liang-Chien;Liu, Chien-Liang;Teo, Tee-Ann
    • 대한원격탐사학회:학술대회논문집
    • /
    • 대한원격탐사학회 2003년도 Proceedings of ACRS 2003 ISRS
    • /
    • pp.888-890
    • /
    • 2003
  • The objective of this investigation is to establish a simple yet effective block adjustment procedure for the orthorectification of multi-orbit satellite images. The major works of the proposed scheme are: (1) adjustment of satellite‘s orbit accurately, (2) calculation of the error vectors for each tie point using digital terrain model and ray tracing technique, (3) refining the orbit using the Least Squares Filtering technique and (4) generation of the orthophotos. In the process of least squares filtering, we use the residual vectors on ground control points and tie points to collocate the orbit. In orthorectification, we use the indirect method to generate the orthoimage. Test areas cover northern Taiwan. Test images are from SPOT 5 satellite. Experimental results indicate that proposed method improves the relative accuracy significantly.

  • PDF

Ortho-rectification of a Digital Aerial Image using LiDAR-derived Elevation Model in Forested Area

  • Yoon, Jong-Suk
    • 대한원격탐사학회지
    • /
    • 제24권5호
    • /
    • pp.463-471
    • /
    • 2008
  • The quality of orthoimages mainly depends on the elevation information and exterior orientation (EO) parameters. Since LiDAR data directly provides the elevation information over the earth's surface including buildings and trees, the concept of true orthorectification has been rapidly developed and implemented. If a LiDAR-driven digital surface model (DSM) is used for orthorectification, the displacements caused by trees and buildings are effectively removed when compared with the conventional orthoimages processed with a digital elevation model (DEM). This study utilized LiDAR data to generate orthorectified digital aerial images. Experimental orthoimages were produced using digital terrain model (DTM) and DSM. For the preparation of orthorectification, EO components, one of the inputs for orthorectification, were adjusted with the ground control points (GCPs) collected from the LiDAR point data, and the ground points were extracted by a filtering method used in a previous research. The orthoimage generated by DSM corresponded more closely to non-ground LiDAR points than the orthoimage produced by DTM.

외부표정요소 직접결정에 의한 수치정사영상 생성 (Generation of Digital Orthoimage using Direct Georeferencing)

  • 송연경
    • Spatial Information Research
    • /
    • 제13권1호
    • /
    • pp.55-63
    • /
    • 2005
  • 최근에는 항측기에 GPS/INS 장비를 탑재하여 사진의 촬영과 동시에 외부표정요소를 직접 결정할 수 있는 Direct Georeferencing기술의 개발로 인하여 지상기준점을 최소로 측량하거나 생략이 가능하게 되었다. Direct Georeferencing 기법을 이용하게 되면 외부표정요소를 구하기 위한 전처리 과정을 생략할 수 있다. 따라서 지상기준점을 이용한 사진기준점측량(AT)을 수행하지 않더라도 수치표고모델만 미리 확보되어 있으면 촬영과 동시에 수치정사사진을 생성할 수 있다. 본 연구에서는 촬영과 동시에 GPS/INS에 의해 획득한 외부표정요소와 항공사진을 이용하여 영상매칭에 의하여 수치표고모델(DEM)을 자동 생성하고, 이 결과를 바탕으로 정사사진을 제작하였다. 실제 도화데이터와 Direct Georeferencing 정사영상과의 오차를 평가한 결과, 표준편차가 X는 약 62cm, Y는 약 76cm 정도가 발생하였다. 이 결과는 축적 1:5,000 수치지도의 정확도 요구를 충분히 만족시킬 수 있는 양호한 결과임을 알 수 있다. Direct Georeferencing에 의한 정사영상의 제작방법은 큰 크기의 과대오차가 발생하는 부분을 수작업 또는 반자동으로 해결할 수 있으면 효율적으로 수치지도를 수정/갱신 할 수 있을 것으로 판단된다.

  • PDF

지적재조사에서 UAS 영상 기반 지적 경계확정 시범 연구 (Demonstration of UAS Image-Based Intellectual Demarcation in Cadastral Reexaminationy)

  • 김달주;강준오;한웅지;이용창
    • 도시과학
    • /
    • 제7권1호
    • /
    • pp.29-38
    • /
    • 2018
  • The cadastral rehabilitation project, which has been implemented since 2012, is a project to re-examine the national land that is not in conformity with the cadastral map, There is a lot of trouble in securing financial resources for business execution. This study examines the utility of UAS(Unmanned Aerial System) image - based cadastral demarcation as an alternative to budget reduction in the current state of cadastral rehabilitation, reasonable boundary adjustment, UAV(Unmanned Aerial Vehicles) is used to create 3D models and orthoimages of business districts, and to check accuracy by superimposing and comparing with digital maps of NGII(National Geographic Information Institute). As a result of the study, the accuracy of the 3D model and the orthoimage through the SfM(Structure-from-Motion) - based image interpretation of the digital map of the NGII were derived. In particular, we confirmed the similarity of UAS-based orthoimage with the cadastral boundaries affirmation, It is anticipated that the cost saving effect of current survey and boundary survey can be expected. In addition, it is easy to prepare a report to reduce civil complaints, which is a problematic element of the adjustment.

고해상도 영상에서 기준점 개수에 따른 정확도 평가에 관한 연구 (A Study on the Accuracy Estimation by Number of Control Points in High Resolution Images)

  • 최현;김기홍;박홍기
    • 한국산업융합학회 논문집
    • /
    • 제21권6호
    • /
    • pp.309-316
    • /
    • 2018
  • The high-resolution satellite images provided by Kompsat-3A, a multipurpose satellite, have various applications such as digital map generation, 3D image generation, and DEM generation. In order to utilize high-resolution satellite images, the user must create an orthoimage in order to use the image in a suitable manner. The position and the number of the ground reference points affect the accuracy of the orthoimage. In particular, the Kompsat-3A satellite image has a high resolution of about 0.5m, so the difficulty in selecting the ground control points and the accuracy of the selected point will have a great influence on the subsequent application process. Therefore, in this study, we analyzed the influence of the number of ground reference points on the accuracy of the terrestrial satellite images.

딥러닝에 의한 라이다 반사강도로부터 엄밀정사영상 생성 (True Orthoimage Generation from LiDAR Intensity Using Deep Learning)

  • 신영하;형성웅;이동천
    • 한국측량학회지
    • /
    • 제38권4호
    • /
    • pp.363-373
    • /
    • 2020
  • 정사영상 생성을 위한 많은 연구들이 진행되어 왔다. 기존의 방법은 정사영상을 제작할 경우, 폐색지역을 탐지하고 복원하기 위해 항공영상의 외부표정요소와 정밀 3D 객체 모델링 데이터가 필요하며, 일련의 복잡한 과정을 자동화하는 것은 어렵다. 본 논문에서는 기존의 방법에서 탈피하여 딥러닝(DL)을 이용하여 엄밀정사영상을 제작하는 새로운 방법을 제안하였다. 딥러닝은 여러 분야에서 더욱 급속하게 활용되고 있으며, 최근 생성적 적대 신경망(GAN)은 영상처리 및 컴퓨터비전 분야에서 많은 관심의 대상이다. GAN을 구성하는 생성망은 실제 영상과 유사한 결과가 생성되도록 학습을 수행하고, 판별망은 생성망의 결과가 실제 영상으로 판단될 때까지 반복적으로 수행한다. 본 논문에서 독일 사진측량, 원격탐사 및 공간정보학회(DGPF)가 구축하고 국제 사진측량 및 원격탐사학회(ISPRS)가 제공하는 데이터 셋 중에서 라이다 반사강도 데이터와 적외선 정사영상을 GAN기반의 Pix2Pix 모델 학습에 사용하여 엄밀정사영상을 생성하는 두 가지 방법을 제안하였다. 첫 번째 방법은 라이다 반사강도영상을 입력하고 고해상도의 정사영상을 목적영상으로 사용하여 학습하는 방식이고, 두 번째 방법에서도 입력영상은 첫 번째 방법과 같이 라이다 반사강도영상이지만 목적영상은 라이다 점군집 데이터에 칼라를 지정한 저해상도의 영상을 이용하여 재귀적으로 학습하여 점진적으로 화질을 개선하는 방법이다. 두 가지 방법으로 생성된 정사영상을 FID(Fréchet Inception Distance)를 이용하여 정량적 수치로 비교하면 큰 차이는 없었지만, 입력영상과 목적영상의 품질이 유사할수록, 학습 수행 시 epoch를 증가시키면 우수한 결과를 얻을 수 있었다. 본 논문은 딥러닝으로 엄밀정사영상 생성 가능성을 확인하기 위한 초기단계의 실험적 연구로서 향후 보완 및 개선할 사항을 파악할 수 있었다.