• 제목/요약/키워드: color calibration

검색결과 209건 처리시간 0.021초

GOCI를 이용한 GOCI-II 근적외 밴드 교차보정 (Cross-Calibration of GOCI-II in Near-Infrared Band with GOCI)

  • 이은경;배수정;안재현;이경상
    • 대한원격탐사학회지
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    • 제39권6_2호
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    • pp.1553-1563
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    • 2023
  • 천리안 해양관측위성 2호기(Geostationary Ocean Color Imager-II, GOCI-II)는 한반도 주변을 포함한 동북아 해역과 전구 영역을 관측하는 해색 위성으로 지난 10년간 운용된 GOCI의 임무를 이어받아 2020년부터 현재까지 운용되고 있다. 본 연구에서는 해색 데이터 산출에 있어 필수 과정인 대기보정 알고리즘을 개선하기 위해 GOCI 영상을 이용한 GOCI-II 근적외 파장(near-infrared, NIR) 밴드의 대리교정을 수행하였다. 이를 위해 NIR 밴드의 대기상층(top-of-atmosphere, TOA) radiance에 대한 교차보정 연구를 수행하였으며, 그 결과로 대리교정 상수를 도출하였다. 본 연구에서 도출된 대리교정 상수를 이용하여 보정한 결과 두 센서의 offset이 감소하였으며, ratio는 745 nm, 865 nm에 대해 각 1.02, 1.04에서 1.0, 0.99로 개선되었다. 이는 두 센서의 일관성이 높아진 것으로 판단된다. 또한, 대기 분자 산란 보정 반사도(Rayleigh-corrected reflectance, 𝜌rc)는 각각 5.62, 9.52% 증가하였다. 이로 인해 745 nm와 865 nm 𝜌rc의 비율의 차이가 발생했으며, 이는 대기보정 알고리즘 내 에어로졸 광 산란 보정 과정을 통해 모든 밴드의 대기보정 결과에 영향을 줄 수 있다. GOCI, GOCI-II 두 위성의 중복되는 운용 기간이 짧아 2021년 3월의 자료만을 사용하였으나, 향후 타위성과의 지속적인 교차보정 연구를 통해 개선이 가능할 것으로 사료된다. 또한 본 연구에서 도출된 NIR 밴드의 대리교정 상수를 적용하여 가시 채널의 대리교정을 수행하고, 해색 산출물의 정확도에 미치는 영향을 분석할 필요가 있다.

인공지능을 이용한 이종액체 정상 상태 혼합의 혼합과정 해석 (Analyses of Steady State Mixing Process of Two-Liquids Using Artificial Intelligence)

  • 공대경;염주호;조경래;도덕희
    • 한국수소및신에너지학회논문집
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    • 제29권5호
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    • pp.523-529
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    • 2018
  • Two liquids which are generally used as fuels of rockets are mixed and their mixing process is quantitatively investigated by the use of particle image velocimetry (PIV). As working fluids for the liquid mixing, Dimethylfuran (DMF) and JetA1 oils have been used. Since the specific gravity of DMF is larger than that of JetA1 oil, the DMF oil has been set at the lower part of the JetA1 oil. For better visualization of the mixing process, Rhodamin B powder has been blended into the DMF oil. An agitator having 3 blades has been used for mixing the two liquids. For quantitative visualization, a LCD monitor has been used as a light source. A color camera, camcoder, has been used for recording the mixing process. The images captured by the camcoder have been digitized into three color components, R, G, and B. The color intensities of R, G, and B have been used as the inputs of the neural network of which hidden layer has 20 neurons. Color-to-concentration calibration has been performed before commencing the main experiments. Once this calibration is completed, the temporal changes of the concentration of the DMF has been quantitatively analyzed by using the constructed measurement system.

정지궤도 해양관측위성(GOCI-II)의 궤도 성능, 복사보정, 영상기하보정 결과 및 상태 (Current Status and Results of In-orbit Function, Radiometric Calibration and INR of GOCI-II (Geostationary Ocean Color Imager 2) on Geo-KOMPSAT-2B)

  • 용상순;강금실;허성식;차성용
    • 대한원격탐사학회지
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    • 제37권5_2호
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    • pp.1235-1243
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    • 2021
  • 해양탑재체(GOCI-II)가 주탑재체이며 정지궤도복합위성2B호 또는 천리안2B호로 명명된 정지궤도 해양관측위성은 2020년2월에 성공적으로 발사되어 한반도 주변의 해양과 연안을 주간 상시 관측과 감시 임무를 수행하고 있다. 해양탑재체는 천리안1호의 해양탑재체(GOCI)의 임무 승계와 향상된 성능으로 해양·연안의 효율적인 관리, 해양재해·재난 저감을 위한 실시간 해양환경모니터링과 어로 비용절감을 위한 어장환경 정보의 생산 등 해양환경감시를 위하여 개발되었다. 발사 후 해양탑채체는 초기 점검시험(IAC) 단계에 모든 기능이 정상적으로 동작됨을 확인하고, 궤도상시험(IOT) 단계에 성능·운영시험, 복사보정과 영상기하보정을 병행 진행하여 그 결과를 핸드오버회의 통하여 보고하고 국가해양위성센터로 운영권을 이관하였다. 주로 온보드 태양광 보정시스템으로 수행되는 복사보정은 사전에 수립된 계획에 따라 주기적으로 진행하여 최종 Gain과 offset 값을 설정, 적용하고 유효성을 확인하였다. 영상기하보정(INR)은 별영상 자료 기반의 네비게이션 필터링과 랜드마크 기반 보정 방식으로 요구규격을 모두 만족함을 확인하고 INR 프로세스를 검증하였다. 본 논문에서 정지궤도 해양위성이 발사 이후 궤도상 성능시험, 복사보정과 영상기하보정의 방법, 절차를 기술하고 결과와 현황을 분석하고 정리하였다.

sRGB 표준색공간을 이용한 컬러매니지먼트에 관한 연구 (A Study on the Color Management using sRGB Standard Color Space)

  • 김동균;조가람;구철회
    • 한국인쇄학회지
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    • 제23권1호
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    • pp.37-51
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    • 2005
  • The solution way of color difference in display device is using a device profile recorded with color dimension, color properties of each device and is using sRGB color space. The color matching is better sRGB than RGB color space. The sRGB is independent device color space and based on the monitor characteristice. An accurate characterization of the display device is essential for color matching. The calibration and characterization process in display device is needed to transform the device dependent color to the device independent color. The process of characterization performs a linerizaiton and transforms the linearized values into the CIE XYZ tristimulus values. The purposes of this paper is to estimate color reproduction using device profile and to explain the propriety of transformation method using variable.

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히스토그램 구간 교정을 이용한 스테레오 영상의 휘도 보정 (Luminance Correction for Stereo Images using Histogram Interval Calibration)

  • 김세호;김희석
    • 전자공학회논문지
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    • 제50권12호
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    • pp.159-167
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    • 2013
  • 스트레오뷰(Stereoview) 시스템에서 카메라 위치 또는 광원의 변화는 양안에 해당하는 두 영상 사이에서 휘도에 대한 색상 분포에 차가 발생 한다. 이러한 색상변화 차는 입체영상(3D) 코딩의 품질을 저하 시키거나 적합하지 않는 프레임이 발생한다. 이러한 휘도에 대한 색상분포 차를 보정하기 위하여 본 논문에서는 스트레오뷰 코딩을 위한 효율적인 히스토그램 구간 보정방법을 제안하였다. 제안한 방법은 타겟뷰의 히스토그램을 분석하여 두 개의 영역으로 구분한 후 기준이 되는 영상의 히스토그램과 영역별 최대 매칭 영역을 분석하여 컬러편차를 보정하도록 하였다. 그리고 제안한 히스토그램 매칭 방법을 다른 컬러 보정방법과 비교하여 휘도 성분 교정을 검증 하였다. 실험 결과 제안하는 알고리즘이 연산 속도와 휘도 교정 PSNR(Peak Signal to Noise Ratio) 결과에서 더 좋은 결과를 보였다.

An innovative idea for developing a new gamma-ray dosimetry system based on optical colorimetry techniques

  • Ioan, Mihail-Razvan
    • Nuclear Engineering and Technology
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    • 제50권3호
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    • pp.519-525
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    • 2018
  • Obtaining knowledge of the absorbed dose up-taken by a certain material when it is exposed to a specific ionizing radiation field is a very important task. Even though there are a plenitude of methods for determining the absorbed dose, each one has its own strong points and also drawbacks. In this article, an innovative idea for the development of a new gamma-ray dosimetry system is proposed. The method described in this article is based on optical colorimetry techniques. A color standard is fixed to the back of a BK-7 glass plate and then placed in a point in space where the absorbed dose needs to be determined. Gamma-ray-induced defects (color centers) in the glass plate start occurring, leading to a degree of saturation of the standard color, which is proportional, on a certain interval, to the absorbed dose. After the exposure, a high-quality digital image of the sample is taken, which is then processed (MATLAB), and its equivalent $I_{RGB}$ intensity value is determined. After a prior corroboration between various well-known absorbed dose values and their corresponding $I_{RGB}$ values, a calibration function is obtained. By using this calibration function, an "unknown" up-taken dose value can be determined.

Screen인쇄법에 의한 Liquid Crystal Display용 Color Filter 제작 (The Manufacture of Color Filter for Liquid Crystal Display by Screen Printing Method)

  • 손세모
    • 한국인쇄학회지
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    • 제13권1호
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    • pp.39-55
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    • 1995
  • There has been an enormous emergence of imaging systems dedicated to hardcopy and softcopy color-appearance comparisons. Pre-press industry use the CRT as a soft proofing device to preview and aid with color corrections and changes before producing the final printed image. Color DTP system is required an accurate image-matching between CRT-image and printed image. In other to develop the color DTP,CRT calibration and CRT color transform to CIE color system are necessary. In this paper, we described a method CRT color transform to CIELab color system using RGB image raw data. Experimental results show that described method is useful valid of color image matching.

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모니터 색상 보정을 위한 색측기 비교 실험에 관한 연구 (Comparative Experimental Study on Color Meter for Monitor Color Correction)

  • 한병조;구경완
    • 전기학회논문지P
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    • 제59권4호
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    • pp.444-449
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    • 2010
  • The PID control to the monitor color correction was applied. Converted Gamma LUT was applied to the video card. Color and brightness information from the PID controller was used as control inputs. Color and brightness information from a calibrated monitor is measured again. Then, the difference between the preset values for the PID controller was compensated by the feedback. The software measured by color meter was used for color and brightness information. All of the monitor does not measure the color and brightness was measured by sampling. The color and brightness from the monitor were measured not by complete enumeration but by sampling. In the experiment, the original image was displayed on the same monitor as well as two other brands, and then, Gamma and Contrast were measured and compared.

GEOMETRY OF SATELLITE IMAGES - CALIBRATION AND MATHEMATICAL MODELS

  • JACOBSEN KARSTEN
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2005년도 Proceedings of ISRS 2005
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    • pp.182-185
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    • 2005
  • Satellite cameras are calibrated before launch in detail and in general, but it cannot be guaranteed that the geometry is not changing during launch and caused by thermal influence of the sun in the orbit. Modem satellite imaging systems are based on CCD-line sensors. Because of the required high sampling rate the length of used CCD-lines is limited. For reaching a sufficient swath width, some CCD-lines are combined to a longer virtual CCD-line. The images generated by the individual CCD-lines do overlap slightly and so they can be shifted in x- and y-direction in relation to a chosen reference image just based on tie points. For the alignment and difference in scale, control points are required. The resulting virtual image has only negligible errors in areas with very large difference in height caused by the difference in the location of the projection centers. Color images can be related to the joint panchromatic scenes just based on tie points. Pan-sharpened images may show only small color shifts in very mountainous areas and for moving objects. The direct sensor orientation has to be calibrated based on control points. Discrepancies in horizontal shift can only be separated from attitude discrepancies with a good three-dimensional control point distribution. For such a calibration a program based on geometric reconstruction of the sensor orientation is required. The approximations by 3D-affine transformation or direct linear transformation (DL n cannot be used. These methods do have also disadvantages for standard sensor orientation. The image orientation by geometric reconstruction can be improved by self calibration with additional parameters for the analysis and compensation of remaining systematic effects for example caused by a not linear CCD-line. The determined sensor geometry can be used for the generation? of rational polynomial coefficients, describing the sensor geometry by relations of polynomials of the ground coordinates X, Y and Z.

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