• 제목/요약/키워드: geometrical calibration

검색결과 43건 처리시간 0.031초

해상도 3차원 상호상관 Volume PIV 시스템 개발 및 적용 (Development and Application of High-resolution 3-D Volume PIV System by Cross-Correlation)

  • 김미영;최장운;이현;이영호
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2002년도 학술대회지
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    • pp.507-510
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    • 2002
  • An algorithm of 3-D particle image velocimetry(3D-PIV) was developed for the measurement of 3-D velocity Held of complex flows. The measurement system consists of two or three CCD camera and one RGB image grabber. Flows size is $1500{\times}100{\times}180(mm)$, particle is Nylon12(1mm) and illuminator is Hollogen type lamp(100w). The stereo photogrammetry is adopted for the three dimensional geometrical mesurement of tracer particle. For the stereo-pair matching, the camera parameters should be decide in advance by a camera calibration. Camera parameter calculation equation is collinearity equation. In order to calculate the particle 3-D position based on the stereo photograrnrnetry, the eleven parameters of each camera should be obtained by the calibration of the camera. Epipolar line is used for stereo pair matching. The 3-D position of particle is calculated from the three camera parameters, centers of projection of the three cameras, and photographic coordinates of a particle, which is based on the collinear condition. To find velocity vector used 3-D position data of the first frame and the second frame. To extract error vector applied continuity equation. This study developed of various 3D-PIV animation technique.

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Prequalification of a set of buckling restrained braces: Part II - numerical simulations

  • Zub, Ciprian Ionut;Stratan, Aurel;Dubina, Dan
    • Steel and Composite Structures
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    • 제34권4호
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    • pp.561-580
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    • 2020
  • Buckling restrained braces (BRBs) were developed as an enhanced alternative to conventional braces by restraining their global buckling, thus allowing development of a stable quasi-symmetric hysteretic response. A wider adoption of buckling restrained braced frames is precluded due to proprietary character of most BRBs and the code requirement for experimental qualification. To overcome these problems, BRBs with capacities corresponding to typical steel multi-storey buildings in Romania were developed and experimentally tested in view of prequalification. In the second part of this paper, a complex nonlinear numerical model for the tested BRBs was developed in the finite element environment Abaqus. The calibration of the numerical model was performed at both component (material models: steel, concrete, unbonding material) and member levels (loading, geometrical imperfections). Geometrically and materially nonlinear analyses including imperfections were performed on buckling restrained braces models under cyclic loading. The calibrated models were further used to perform a parametric study aiming at assessing the influence of the strength of the buckling restraining mechanism, concrete class of the infill material, mechanical properties of steel used for the core, self-weight loading, and frame effect on the cyclic response of buckling restrained braces.

Database of virtual spectrum of artificial radionuclides for education and training in in-situ gamma spectrometry

  • Yoomi Choi;Young-Yong Ji;Sungyeop Joung
    • Nuclear Engineering and Technology
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    • 제55권1호
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    • pp.190-200
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    • 2023
  • As the field of application of in-situ gamma spectroscopy is diversified, proficiency is required for consistent and accurate analysis. In this study, a program was developed to virtually create gamma energy spectra of artificial nuclides, which are difficult to obtain through actual measurements, for training. The virtual spectrum was created by synthesizing the spectra of the background radiation obtained through actual measurement and the theoretical spectra of the artificial radionuclides obtained by a Monte Carlo simulation. Since the theoretical spectrum can only be obtained for a given geometrical structure, representative major geometries for in-situ measurement (ground surface, concrete wall, radioactive waste drum) and the detectors (HPGe, NaI(Tl), LaBr3(Ce)) were predetermined. Generated virtual spectra were verified in terms of validity and harmonization by gamma spectrometry and energy calibration. As a result, it was confirmed that the energy calibration results including the peaks of the measured spectrum and the peaks of the theoretical spectrum showed differences of less than 1 keV from the actual energies, and that the calculated radioactivity showed a difference within 20% from the actual inputted radioactivity. The verified data were assembled into a database and a program that can generate a virtual spectrum of desired condition was developed.

영상의학 검사 판독용 모니터 정도관리 Guiding Instrument 제작과 유용성 고찰 (A Study on Production and Its Usefulness of AAPM TG18 Guiding Instrument for Diagnostic Monitor QC)

  • 손기경;성동욱;정재호;강희두;류경남
    • 대한디지털의료영상학회논문지
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    • 제10권1호
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    • pp.21-28
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    • 2008
  • Diagnostic display monitor QA according to AAPM TG18 is usually performed by PACS administrator, product manager and reading doctor, and for acceptance testing and periodic quality control evaluation, a combination of visual and quantitative tests can be used, as outlined in sections 5 and 6 of 'assessment of display performance for medical imaging systems'. Although many display tests can be performed visually, a more objective and quantitative evaluation of display performance requires special test tools. The required instruments vary in their complexity and cost, depending on the context of the evaluation(research, acceptance testing, or quality control) and how thorough the evaluation needs to be. Objective and reliable assessment of many display characteristics can be performed with relatively inexpensive equipment, So, we made 'AAPM TG18 guiding instrument' to ues variable purpose of the evaluation of 'geometrical distortions(quantitative"', 'veiling glare(visual)' and 'sensor calibration'. The spatial measurements for the quantitative evaluation of geometric distortions, and the measurement of the veling-glare ring response function which provides information regarding the spatial extent of the luminance spread, can be performed using the TG18 guiding instrument can be used to sensor calibration to standardize the basic rate of 0% luminance when periodic calibration.

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SUNSPOTS AND THEIR ASSOCIATED SOLAR ACTIVITIES I. PHYSICAL CHARACTERISTICS OF A WHITE LIGHT FLARE

  • LEE SANG-WOO;YUN HONG SIK
    • 천문학회지
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    • 제28권1호
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    • pp.77-87
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    • 1995
  • An attempt has been made to analyze time series of $H_\alpha,\;H_\beta,\;and\; H_\gamma$ line profiles taken from a 3B/X6.1 flare which occurred on Oct. 27, 1991 in an active region, NOAA 6891. A total of 22 sets of $H_\alpha,\;H_\beta,\;and\; H_\gamma$ taken with a low and non-uniform time resolution of 10-40 seconds were scanned by PDS with absolute intensity calibration to derive the physical characteristics of the material in the flare chromosphere. Our . results are as follows: (1) The lower Balmer lines observed during the flare activity are broadened by Stark effect. (2) At the peak of the flare activity, the electron temperature of the Balmer line emitting region reaches up to 35000K and its geometrical thickness increases to a scale of $10^4km$, suggesting that high energy particles penetrate deep into the photospheric level.

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초분광 분해기의 광학계 설계 및 영상 처리 (Optical System Design and Image Processing for Hyperspectral Imaging Systems)

  • 허아영;최승원;이재훈;김태형;박동조
    • 한국군사과학기술학회지
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    • 제13권2호
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    • pp.328-335
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    • 2010
  • A hyperspectral imaging spectrometer has shown significant advantages in performance over other existing ones for remote sensing applications. It can collect hundreds of narrow, adjacent spectral bands for each image, which provides a wealth of information on unique spectral characteristics of objects. We have developed a compact hyperspectral imaging system that successively shows high spatial and spectral resolutions and fast data processing performance. In this paper, we present an overview of the hyperspectral imaging system including the strucure of geometrical optics and several image processing schemes such as wavelength calibration and noise reduction for image data on Visible and Near-Infrared(VNIR) and Shortwave-Infrared(SWIR) band.

내장형 렌즈 왜곡 보정 알고리즘 구현을 위한 이미지 워핑 방법 (An Image Warping Method for Implementation of an Embedded Lens Distortion Correction Algorithm)

  • 유원필;정연구
    • 정보처리학회논문지B
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    • 제10B권4호
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    • pp.373-380
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    • 2003
  • 대부분의 저가형 디지털 카메라에 사용되는 광학계의 경우 상대적으로 심한 렌즈 왜곡을 보이고 있다. 본 연구의 목적은 렌즈의 기하학적 왜곡에 의한 영상 품질의 저하를 보정하려는 것으로 Tsai의 카메라 캘리브레이션 방법을 단순화한 렌즈 왜곡 변수 계산 방법 및 계산된 렌즈 왜곡 변수를 이용하여 왜곡된 원영상을 이미지 워핑을 통해 보정하는 방법을 제안한다. 렌즈 왜곡 변수 계산 단계에서는 카메라 캘리브레이션 과정의 단순화를 위해 scale factor ratio 및 이미지 센터를 처리하는 실질적인 방식에 대해 보고하며 정량적인 이미지 품질 척도를 이용하여 왜곡보정 효과를 측정함으로써 제안된 방법의 타당성을 보인다. 한편, 렌즈 왜곡 변수 계산 단계에서의 결과를 바탕으로 이미지 워핑을 적용하기 위해 역공간 매핑 방식을 적용하는 경우 본 연구에서 적용된 방사상 렌즈 왜곡 모델의 정확한 해를 구하기 위해서는 3차 방정식의 해를 구하여야 한다. 본 논문에서는 정보기기로의 내장형 구현에 필수적인 실시간 처리를 목적으로 2차 방정식으로의 근사화 방법을 제안한다. 실험을 통하여 제안된 근사화 방법의 실시간 구현 가능성을 보이며 아울러 3차 방정식의 해를 이용한 이미지 워핑의 경우와 성능이 동등함을 보인다.

SAR 영상 보정용 삼각 전파 반사기의 정확한 RCS 추출 (RCS Extraction of Trihedral Corner Reflector for SAR Image Calibration)

  • 권순구;윤지형;오이석
    • 한국전자파학회논문지
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    • 제21권9호
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    • pp.979-986
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    • 2010
  • 본 논문에서는 합성 개구 레이더(SAR: Synthetic Aperture Radar) 영상에서 SAR 보정용으로 설치된 삼각 전파 반사기(TCR: Trihedral Corner Reflector)의 레이더 단면적(RCS: Radar Cross Section)을 정확하게 추출하는 방법을 연구하고, SAR 보정 정확도를 분석한다. TCR의 이론적 RCS를 geometrical optics(GO)와 physical optics(PO) 방법을 이용하여 이론적으로 계산하고, 측정값과 비교하여 정확성을 검증한다. 이때에 단일 반사는 PO로, 이중 반사는 GO-PO로, 삼중 반사는 GO-GO-PO로 계산하고, 모서리 영향은 PTD(Physical Theory of Diffraction) 방법을 이용하여 이론적 RCS를 정확하게 계산한다. 크기가 다른 5개의 TCR를 설치하고, TerraSAR-X로 그 지역에 대한 위성 영상을 취득하여 그 TCR들에 대한 RCS를 추출한다. 레이더 IRF(Impulse Response Function) 특성에 의해 분산된 전력(power spill)을 모두 구하기 위해 정사각형 모양의 면적(window)을 설정하여 정확하게 RCS를 추출하고, 이 RCS를 이론적 RCS와 비교한다. 면적의 크기와 배경의 레이더 후방 산란 계수 크기에 따른 TCR의 RCS 오차를 계산하며, 최소 적분 면적과 최대 배경 산란계수 크기를 제안한다.

Virtual calibration of whole-body counters to consider the size dependency of counting efficiency using Monte Carlo simulations

  • Park, MinSeok;Kim, Han Sung;Yoo, Jaeryong;Kim, Chan Hyeong;Jang, Won Il;Park, Sunhoo
    • Nuclear Engineering and Technology
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    • 제53권12호
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    • pp.4122-4129
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    • 2021
  • The counting efficiencies obtained using anthropomorphic physical phantoms are generally used in whole-body counting measurements to determine the level of internal contamination in the body. Geometrical discrepancies between phantoms and measured individuals affect the counting efficiency, and thus, considering individual physical characteristics is crucial to improve the accuracy of activity estimates. In the present study, the counting efficiencies of whole-body counting measurements were calculated considering individual physical characteristics by employing Monte Carlo simulation for calibration. The NaI(Tl)-based stand-up and HPGe-based bed type commercial whole-body counters were used for calculating the counting efficiencies. The counting efficiencies were obtained from 19 computational phantoms representing various shapes and sizes of the measured individuals. The discrepancies in the counting efficiencies obtained using the computational and physical phantoms range from 2% to 33%, and the results indicate that the counting efficiency depends on the size of the measured individual. Taking into account the body size, the equations for estimating the counting efficiencies were derived from the relationship between the counting efficiencies and the body-build index of the subject. These equations can aid in minimizing the size dependency of the counting efficiency and provide more accurate measurements of internal contamination in whole-body counting measurements.

다목적실용위성2호 센서모델링 및 기하정확도 분석 (KOMPSAT-2 Direct Sensor Modeling and Geometric Accuracy Analysis)

  • 서두천;김문규;이동한;송정헌;박수영;임효숙;안기원;이효성
    • 한국측량학회:학술대회논문집
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    • 한국측량학회 2007년도 춘계학술발표회 논문집
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    • pp.149-152
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    • 2007
  • The horizontal geo-location accuracy of KOMPSAT-2, without GCPs (Ground Control Points) is 80 meters CE90 for monoscopic image of up to 26 degrees off-nadir angle, after processing including POD (Precise Orbit Determination), PAD(Precise Attitude Determination) and AOCS (Attitude and Orbit Control Subsystem) sensor calibration. In case of multiple stereo images, without GCPs, the vertical geometric accuracy is less than 22.4 meters LE 90 and the horizontal geometric accuracy is less than 25.4 meters. There are two types of sensor model for KOMPSAT-2, direct sensor model and Rational Function Model (RFM). In general, a sensor model relates object coordinates to image coordinates The major objective of this investigation is to check and verify the geometrical performance when initial KOMPSAT-2 images are employed and briefly introduce the sensor model of KOMPSAT-2.

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