• 제목/요약/키워드: Area Matching

검색결과 783건 처리시간 0.026초

Topography, Vertical and Horizontal Deformation In the Sulzberger Ice Shelf, West Antarctica Using InSAR

  • Kwoun Oh-Ig;Baek Sangho;Lee Hyongki;Sohn Hong-Gyoo;Han Uk;Shum C. K.
    • 대한원격탐사학회지
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    • 제21권1호
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    • pp.73-81
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    • 2005
  • We construct improved geocentric digital elevation model (DEM), estimate tidal dynamics and ice stream velocity over Sulzberger Ice Shelf, West Antarctica employing differential interferograms from 12 ERS tandem mission Synthetic Aperture Radar (SAR) images acquired in austral fall of 1996. Ice, Cloud, and land Elevation Satellite (ICESat) laser altimetry profiles acquired in the same season as the SAR scenes in 2004 are used as ground control points (GCPs) for Interferometric SAR (InSAR) DEM generation. 20 additional ICESat profiles acquired in 2003-2004 are then used to assess the accuracy of the DEM. The vertical accuracy of the OEM is estimated by comparing elevations with laser altimetry data from ICESat. The mean height difference between all ICESat data and DEM is -0.57m with a standard deviation of 5.88m. We demonstrate that ICESat elevations can be successfully used as GCPs to improve the accuracy of an InSAR derived DEM. In addition, the magnitude and the direction of tidal changes estimated from interferogram are compared with those predicted tidal differences from four ocean tide models. Tidal deformation measured in InSAR is -16.7cm and it agrees well within 3cm with predicted ones from tide models. Lastly, ice surface velocity is estimated by combining speckle matching technique and InSAR line-of-sight measurement. This study shows that the maximum speed and mean speed are 509 m/yr and 131 m/yr, respectively. Our results can be useful for the mass balance study in this area and sea level change.

한반도 토지피복도 제작을 위한 다시기 Landsat ETM+ 영상의 정합 방법 (Multi-temporal Landsat ETM+ Mosaic Method for Generating Land Cover Map over the Korean Peninsula)

  • 김선화;강성진;이규성
    • 대한원격탐사학회지
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    • 제26권2호
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    • pp.87-98
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    • 2010
  • 한반도 전역과 같은 상대적으로 넓은 지역의 정확한 분류를 위해서는 단일 영상 분류 후 영상정합 방식보다는 영상 정합 후 분류방법이 보다 정확하다. 또한 다중시기 정보는 분류에 매우 유용하게 사용될 수 있다. 본 연구에서는 한반도 전역을 대상으로 최적의 Landsat ETM+ 영상정합 방식을 제시하였다. 한반도 전역에 대해 2000년부터 2001년까지 획득된 총 65개의 Landsat ETM+영상을 이용하여 낙엽기, 이앙기, 개엽기 각각 정합 영상을 제작하였다. 이때 보다 정확한 영상정합을 위해 히스토그램 매칭, 중앙영상을 기준으로 한 1차 회귀식적용방법, Landsat 촬영 패스별로 적용한 1차 회귀식 적용방법, 총 세 가지 상대복사보정 방법을 적용하였다. 적용 결과, 패스별 상대복사보정한 결과가 그 보정 효과가 크면서, 높은 분류 정확도를 나타냈다. 또한 시기별 정합영상을 살펴보면, 개엽기의 정합영상이 타시기에 비해 상대적으로 인접한 영상 간 지표물의 변이가 다양하게 나타나는 것을 볼 수 있었다.

A Numerical Study of Turbulent Flow Around a Twin-Skeg Container Ship Model with Appendages

  • Kim, Hyoung-Tae;Lee, Pyung-Kuk;Kim, Hee-Taek
    • Journal of Ship and Ocean Technology
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    • 제10권4호
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    • pp.12-23
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    • 2006
  • In this paper, a numerical study is carried out to investigate the turbulent flow around a twin-skeg container ship model with rudders including propeller effects. A commercial CFD code, FLUENT is used with body forces distributed on the propeller disk to simulate the ship stem and wake flows with the propeller in operation. A multi-block, matching, structured grid system has been generated for the container ship hull with twin-skegs in consideration of rudders and body-force propeller disks. The RANS equations for incompressible fluid flows are solved numerically by using a finite volume method. For the turbulence closure, a Reynolds stress model is used in conjunction with a wall function. Computations are carried out for the bare hull as well as the hull with appendages of a twin-skeg container ship model. For the bare hull, the computational results are compared with experimental data and show generally a good agreement. For the hull with appendages, the changes of the stem flow by the rudders and the propellers have been analyzed based on the computed result since there is no experimental data available for comparison. It is found the flow incoming to the rudders has an angle of attack due to the influence of the skegs and thereby the hull surface pressure and the limiting streamlines are changed slightly by the rudders. The axial velocity of the propeller disk is found to be accelerated overall by about 35% due to the propeller operation with the rudders. The area and the magnitude of low pressure on the hull surface enlarge with the flow acceleration caused by the propeller. The propellers are found to have an effect on up to the position where the skeg begins. The propeller slipstream is disturbed strongly by the rudders and the flow is accelerated further and the transverse velocity vectors are weakened due to the flow rectifying effect of the rudder.

Utility of False Profile View for Screening of Ischiofemoral Impingement

  • Kwak, Dae-Kyung;Yang, Ick-Hwan;Kim, Sungjun;Lee, Sang-Chul;Park, Kwan-Kyu;Lee, Woo-Suk
    • Hip & pelvis
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    • 제30권4호
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    • pp.219-225
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    • 2018
  • Purpose: Ischiofemoral impingement (IFI)-primarily diagnosed by magnetic resonance imaging (MRI)-is an easily overlooked disease due to its low incidence. The purpose of this study was to evaluate the usefulness of false profile view as a screening test for IFI. Materials and Methods: Fifty-eight patients diagnosed with IFI between June 2013 and July 2017 were enrolled in this retrospective study. A control group (n=58) with matching propensity scores (age, gender, and body mass index) were also included. Ischiofemoral space (IFS) was measured as the shortest distance between the lateral cortex of the ischium and the medial cortex of lesser trochanter in weight bearing hip anteroposterior (AP) view and false profile view. MRI was used to measure IFS and quadratus femoris space (QFS). The receiver operating characteristics (ROC), area under the ROC curve (AUC) and cutoff point of the IFS were measured by false profile images, and the correlation between the IFS and QFS was analyzed using the MRI scans. Results: In the false profile view and hip AP view, patients with IFI had significantly decreased IFS (P<0.01). In the false profile view, ROC AUC (0.967) was higher than in the hip AP view (0.841). Cutoff value for differential diagnosis of IFI in the false profile view was 10.3 mm (sensitivity, 88.2%; specificity, 88.4%). IFS correlated with IFS (r=0.744) QFS (0.740) in MRI and IFS (0.621) in hip AP view (P<0.01). Conclusion: IFS on false profile view can be used as a screening tool for potential IFI.

KOMPSAT-3 영상 모자이킹을 위한 경계선 추정 방법에 대한 연구 (A Study on the Seamline Estimation for Mosaicking of KOMPSAT-3 Images)

  • 김현호;정재헌;이동한;서두천
    • 대한원격탐사학회지
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    • 제36권6_2호
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    • pp.1537-1549
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    • 2020
  • KOMPSAT-3의 지상해상도는 전정색 밴드: 0.7 m, 다중 스펙트럴 밴드: 2.8 m이며, 관측 폭의 경우 16 km이다. 따라서 관측 폭(16 km) 보다 넓은 지역의 영상을 한 번의 촬영으로 획득할 수 없으며, 관측 폭 단위로 넓은 지역을 겹치게 촬영 한 후에 획득한 영상들을 하나의 영상으로 만들어야 주어야 한다. 이때 필요한 알고리즘을 영상 모자이킹 또는 영상 스티칭이라고 하며, 지도 제작, 국토관리 분야 등에 사용된다. 모자이킹 알고리즘은 일반적으로 (1) 특징점 추출 및 매칭, (2) 복사 평형, (3) 경계선 추정, (4) 영상 블렌딩의 4단계로 이루어져 있다. 본 논문에서는 위성 영상에서 효과적으로 경계선 추정할 수 있는 방법에 대해 연구하였다. 그 결과 기존의 방법에 비하여 더 정확하게 경계선을 추정할 수 있었으며, 모자이킹이 된 영상도 경계선 부분의 이질감이 최소화 되었다.

Spatial Gap-Filling of Hourly AOD Data from Himawari-8 Satellite Using DCT (Discrete Cosine Transform) and FMM (Fast Marching Method)

  • Youn, Youjeong;Kim, Seoyeon;Jeong, Yemin;Cho, Subin;Kang, Jonggu;Kim, Geunah;Lee, Yangwon
    • 대한원격탐사학회지
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    • 제37권4호
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    • pp.777-788
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    • 2021
  • Since aerosol has a relatively short duration and significant spatial variation, satellite observations become more important for the spatially and temporally continuous quantification of aerosol. However, optical remote sensing has the disadvantage that it cannot detect AOD (Aerosol Optical Depth) for the regions covered by clouds or the regions with extremely high concentrations. Such missing values can increase the data uncertainty in the analyses of the Earth's environment. This paper presents a spatial gap-filling framework using a univariate statistical method such as DCT-PLS (Discrete Cosine Transform-based Penalized Least Square Regression) and FMM (Fast Matching Method) inpainting. We conducted a feasibility test for the hourly AOD product from AHI (Advanced Himawari Imager) between January 1 and December 31, 2019, and compared the accuracy statistics of the two spatial gap-filling methods. When the null-pixel area is not very large (null-pixel ratio < 0.6), the validation statistics of DCT-PLS and FMM techniques showed high accuracy of CC=0.988 (MAE=0.020) and CC=0.980 (MAE=0.028), respectively. Together with the AI-based gap-filling method using extra explanatory variables, the DCT-PLS and FMM techniques can be tested for the low-resolution images from the AMI (Advanced Meteorological Imager) of GK2A (Geostationary Korea Multi-purpose Satellite 2A), GEMS (Geostationary Environment Monitoring Spectrometer) and GOCI2 (Geostationary Ocean Color Imager) of GK2B (Geostationary Korea Multi-purpose Satellite 2B) and the high-resolution images from the CAS500 (Compact Advanced Satellite) series soon.

도시재생사업 추진방식의 차이점과 정책적 개선방안 - 서울시와 국토부 도시재생사업 사례를 중심으로 - (A Study on Major Differences between Urban Regeneration Projects' Execution Methods and Future Policy Improvements Propositions - Centering around a Comparative Analysis of the Seoul Metropolitan City-MOLIT Urban Regeneration Project Execution Cases -)

  • 박성원;함광민
    • 한국환경과학회지
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    • 제31권9호
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    • pp.743-755
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    • 2022
  • This study aims to review the differences in urban regeneration independently implemented by the government (Ministry of Land, Infrastructure, and Transport, MOLIT) and Seoul based on related laws and ordinances, and to draw out the implications of Korean urban regeneration's directions. The results are as follows. First, Seoul has constantly responded to the revision of the Urban Regeneration Act by adjusting and specifying the contents of ordinances, and especially, there have been efforts to enhance regional characteristics suitably for the circumstances of Seoul. Second, in the urban regeneration of Seoul, the budgets including the matching ratio of national and local subsidies shall be changed according to the standards of the MOLIT in changing designating places after the selection of the urban regeneration by the ministry, and this procedure and these implementation methods cause confusion to Seoul and local governments. Third, there were differences in the results of comparing the budgets and support methods of the "Gaggum Housing Project" of Seoul and "New Deal Housing Repair Project" of the MOLIT, which caused conflicts due to the differences in the project implementation and support standards, and the arbitrary interpretation of the guidelines. Although the urban regeneration greatly contributed to the revelation and conservation of regional characteristics, it might be necessary to establish systems that can enhance citizens' awareness and compensate the efficient contents needed for each region in the future.

드론의 3D 촬영 경로를 이용한 정사영상 제작 (Ortho-image Generation using 3D Flight Route of Drone)

  • 윤종현;김기홍;최현
    • 한국산업융합학회 논문집
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    • 제26권5호
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    • pp.775-784
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    • 2023
  • Drone images are being used more and more actively in the fields of surveying and spatial information, and are rapidly replacing existing aerial and satellite images. The technology of quickly acquiring real-time data at low cost and processing it is now being applied to actual industries beyond research. However, there are also problems encountered as this progresses. When high-resolution spatial information is acquired using a general 2D flight plan for a terrain with sever undulations, problems arise due to the difference in resolution of the data. In particular, when a low-altitude high-resolution image is taken using a drone in a mountainous or steep terrain, there may be a problem in image matching due to a resolution difference caused by terrain undulations. This problem occurs because a drone acquires data while flying on a 2D plane at a fixed altitude, just like conventional aerial photography. In order to acquire high-quality 3D data using a drone, the scale difference for the shooting distance should be considered. In addition, in order to obtain facade images of large structures, it is necessary to take images in 3D space. In this study, in order to improve the disadvantages of the 2D flight method, a 3D flight plan was established for the study area, and it was confirmed that high-quality 3D spatial information could be obtained in this way.

상급종합병원 입원환자의 욕창발생 위험예측을 위한 Braden Scale의 타당도 검증 (Determining Optimal Cut-off Score for the Braden Scale on Assessment of Pressure Injury for Tertiary Hospital Inpatients)

  • 박숙현;최혜연;손연정
    • 중환자간호학회지
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    • 제16권3호
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    • pp.24-33
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    • 2023
  • Purpose : This study aims to establish an optimal cut-off score on the Braden scale for the assessment of pressure injury to detect pressure injury risks among inpatients in a South Korean tertiary hospital. Methods : This retrospective study used electronic medical records, from January to December 2022. A total of 654 patients were included in the study. Of these, 218 inpatients with pressure injuries and 436 without pressure injuries were classified and analyzed using 1:2 Propensity Score Matching (PSM), and the generalized estimating equation was performed using SPSS Version 26 and the R Machlt package program. Results : The cut-off value on the Braden scale for distinguishing pressure injury was 17 points, and the AUC (area under the ROC curve) was 0.531 (0.484-0.579). The sensitivity was 56.6% (45.5-67.7%) and the specificity was 69.7% (66.0-73.4%). With 17 points, the Braden scale cut-off distinguished those who had pressure injuries from those who did not at the time of admission (p < .03). In the pressure injury group, the Braden score on the day of the pressure injury was 14, with significant results in all subcategories except the moisture category. Conclusion : Our findings revealed that a cut-off value of 17 was optimal for predicting the risk of pressure injuries among tertiary hospital inpatients. Future studies should evaluate the optimal cut-off values in different clinical environments. Additionally, it is necessary to conduct multicenter large sample studies to verify the effectiveness of a 17 value in PI risk assessments.

직사각형 슬롯을 갖는 C-ITS용 패치 안테나에 대한 연구 (A Study on Patch Antenna for C-ITS with Rectangle Slot)

  • 강상원;장대순
    • 한국인터넷방송통신학회논문지
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    • 제24권1호
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    • pp.103-107
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    • 2024
  • 본 논문은 직사각형 슬롯과 스트립 도체를 이용한 삼각 패치 안테나에 대한 연구이다. 직사각형 슬롯을 갖는 삼각 패치 안테나 특성을 확인하기 위해 슬롯 길이와 간격을 조정하였고, 복사 패치의 형태를 삼각형, 직사각형, 육각형으로 변화시켜 임피던스 매칭을 하였다. 안테나 파라미터 특성으로 확인하기 위해 HFSS 시뮬레이터를 이용하였다. 제안한 안테나 크기는 26 mm × 26 mm이다. 제안한 안테나에서 시뮬레이션을 통해 얻게 된 VSWR 2이하인 주파수 대역은 5.27 ~ 6.24 GHz이며, 주파수 대역폭은 970 MHz이다. 실제로 제작한 안테나의 주파수 대역은 5.24 ~ 6.38 GHz이고, 주파수 대역폭은 1140 MHz이다. 복사패턴을 확인한 주파수는 5.855 GHz, 5.890 GHz, 5.925 GHz이다. 최대 이득은 5.01 dBi이다. 모든 복사패턴에서 지향성 특징을 갖는 것을 확인할 수 있었다.