• 제목/요약/키워드: absolute orientation

검색결과 75건 처리시간 0.027초

Smart monitoring analysis system for tunnels in heterogeneous rock mass

  • Kim, Chang-Yong;Hong, Sung-Wan;Bae, Gyu-Jin;Kim, Kwang-Yeom;Schubert, Wulf
    • 한국지구물리탐사학회:학술대회논문집
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    • 한국지구물리탐사학회 2003년도 Proceedings of the international symposium on the fusion technology
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    • pp.255-261
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    • 2003
  • Tunnelling in poor and heterogeneous ground is a difficult task. Even with a good geological investigation, uncertainties with respect to the local rock mass structure will remain. Especially for such conditions, a reliable short-term prediction of the conditions ahead and outside the tunnel profile are of paramount importance for the choice of appropriate excavation and support methods. The information contained in the absolute displacement monitoring data allows a comprehensive evaluation of the displacements and the determination of the behaviour and influence of an anisotropic rock mass. Case histories and with numerical simulations show, that changes in the displacement vector orientation can indicate changing rock mass conditions ahead of the tunnel face (Schubert & Budil 1995, Steindorfer & Schubert 1997). Further research has been conducted to quantify the influence of weak zones on stresses and displacements (Grossauer 2001). Sellner (2000) developed software, which allows predicting displacements (GeoFit$\circledR$). The function parameters describe the time and advance dependent deformation of a tunnel. Routinely applying this method at each measuring section allows determining trends of those parameters. It shows, that the trends of parameter sets indicate changes in the stiffness of the rock mass outside the tunnel in a similar way, as the displacement vector orientation does. Three-dimensional Finite Element simulations of different weakness zone properties, thicknesses, and orientations relative to the tunnel axis were carried out and the function parameters evaluated from the results. The results are compared to monitoring results from alpine tunnels in heterogeneous rock. The good qualitative correlation between trends observed on site and numerical results gives hope that by a routine determination of the function parameters during excavation the prediction of rock mass conditions ahead of the tunnel face can be improved. Implementing the rules developed from experience and simulations into the monitoring data evaluation program allows to automatically issuing information on the expected rock mass quality ahead of the tunnel.

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사진측랑기법을 이용한 이동객체 추적에 관한 연구 - 축구장 모형을 중심으로 - (A Study on Tracking a Moving Object using Photogrammetric Techniques - Focused on a Soccer Field Model -)

  • 배상근;김병국;정재승
    • 한국측량학회지
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    • 제24권2호
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    • pp.217-226
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    • 2006
  • 객체의 추출 및 추적은 동영상을 처리하는 영상처리 및 컴퓨터비전 분야에서 매우 기본적이고 중요한 단계로 여러 가지 알고리즘이 제안되었다. 본 논문에서는 두 대의 CCD 카메라를 이용하여 영상을 획득하면서 이동하는 객체를 추적하고 좌표를 계산하기 위한 알고리즘을 제안하였다. 특히 개발한 알고리즘의 적용 및 실용화를 위해 축구장에 대한 1/100크기의 축소모형을 제작하여 실험하였다. CCD 카메라를 통해 얻어지는 영상에서 이동 객체 (축구공)의 RGB값을 이용해 후보를 선정하고 후보 중 객체의 크기값(MBR size)을 이용해 객체를 추출한다. 이렇게 추출된 이동객체의 영상좌표를 획득하고 이동객체의 현재 위치를 중심으로 예상 움직임 범위를 결정하여 그 범위 내에서만 검색을 실시해 이동객체의 실시간 위치를 추적하게 된다. 한편 두 대의 CCD 카메라에 대한 상호표정 및 절대표정을 수행하고, 공간전방교선법을 이용함으로써 이동객체의 3차원 좌표를 획득할 수 있다.

數値寫眞測量에 있어서 epipolar 幾何狀態를 形成하기 위한 映像再配列 (Image Resampling for Epipolar Geometry in Digital Photogrammetry)

  • 유복모;윤경철;정수
    • 한국측량학회지
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    • 제10권2호
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    • pp.25-30
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    • 1992
  • 수치사진측량에서 이용되는 대부분의 알고리즘은 수치화된 입체영상이 epipolar 기하상태를 이루고 있다는 가정을 근거로 하고 있으므로, 입체쌍의 주사선이 epipolartjs이 되어야 한다. 그러나 항공사진의 경우는 매 순간의 촬영위치에서 촬영자세가 달라지므로 epipolar 기하상태를 이루지 못한다. 본 연구에서는 한 쌍의 입체항공사진을 주사기(scanner)에 의해 수치영상으로 변환시키고, 절대표정후의 외부표정요소를 이용해 영상 재배열을 수행하는 과정에서 대해 연구하였다. 그 결과 입체수치영상으로부터 epipolar 기하상태의 영상을 생성하였다. 생성된 epipolar 영상은 영상정합 과정에 적용하기 위해 수치영상상관기법으로 영상정합을 실시하였고, 영상정합의 결과를 이용해 수치표고모형을 제작하였다. 영상정합에 의해 생성된 수치표모고형은 해석도화기에 의해 생성된 수치표고모형과 비교하였으며 그 결과 경제적인 방법으로 수치표고모형을 제작하는 방안이 제시되었다.

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Software development for the visualization of brain fiber tract by using 24-bit color coding in diffusion tensor image

  • Oh, Jung-Su;Song, In-Chan;Ik hwan Cho;Kim, Jong-Hyo;Chang, Kee-Hyun;Park, Kwang-Suk
    • 대한자기공명의과학회:학술대회논문집
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    • 대한자기공명의과학회 2002년도 제7차 학술대회 초록집
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    • pp.133-133
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    • 2002
  • Purpose: The purpose of paper is to implement software to visualize brain fiber tract using a 24-bit color coding scheme and to test its feasibility. Materials and Methods: MR imaging was performed on GE 1.5 T Signa scanner. For diffusion tensor image, we used a single shot spin-echo EPI sequence with 7 non-colinear pulsed-field gradient directions: (x, y, z):(1,1,0),(-1,1,0),(1,0,1),(-1,0,1),(0,1,1),(0,1,-1) and without diffusion gradient. B-factor was 500 sec/$\textrm{mm}^2$. Acquisition parameters are as follows: TUTE=10000ms/99ms, FOV=240mm, matrix=128${\times}$128, slice thickness/gap=6mm/0mm, total slice number=30. Subjects consisted of 10 normal young volunteers (age:21∼26 yrs, 5 men, 5 women). All DTI images were smoothed with Gaussian kernel with the FWHM of 2 pixels. Color coding schemes for visualization of directional information was as follows. HSV(Hue, Saturation, Value) color system is appropriate for assigning RGB(Red, Green, and Blue) value for every different directions because of its volumetric directional expression. Each of HSV are assigned due to (r,$\theta$,${\Phi}$) in spherical coordinate. HSV calculated by this way can be transformed into RGB color system by general HSV to RGB conversion formula. Symmetry schemes: It is natural to code the antipodal direction to be same color(antipodal symmetry). So even with no symmetry scheme, the antipodal symmetry must be included. With no symmetry scheme, we can assign every different colors for every different orientation.(H =${\Phi}$, S=2$\theta$/$\pi$, V=λw, where λw is anisotropy). But that may assign very discontinuous color even between adjacent yokels. On the other hand, Full symmetry or absolute value scheme includes symmetry for 180$^{\circ}$ rotation about xy-plane of color coordinate (rotational symmetry) and for both hemisphere (mirror symmetry). In absolute value scheme, each of RGB value can be expressed as follows. R=λw|Vx|, G=λw|Vy|, B=λw|Vz|, where (Vx, Vy, Vz) is eigenvector corresponding to the largest eigenvalue of diffusion tensor. With applying full symmetry or absolute value scheme, we can get more continuous color coding at the expense of coding same color for symmetric direction. For better visualization of fiber tract directions, Gamma and brightness correction had done. All of these implementations were done on the IDL 5.4 platform.

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A New Device and Procedure for Kinematic Calibration of Parallel Manipulators

  • Rauf, Abdul;Kim, Sung-Gaun;Ryu, Je-Ha
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2003년도 ICCAS
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    • pp.1615-1620
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    • 2003
  • Kinematic calibration is a process whereby the actual values of geometric parameters are estimated so as to minimize the error in absolute positioning. Measuring all components of Cartesian posture, particularly the orientation, can be difficult. With partial pose measurements, all parameters may not be identifiable. This paper proposes a new device that can identify all kinematic parameters with partial pose measurements. Study is performed for a six degree-of-freedom fully parallel Hexa Slide manipulator. The device, however, is general and can be used for other parallel manipulators. The proposed device consists of a link with U joints on both sides and is equipped with a rotary sensor and a biaxial inclinometer. When attached between the base and the mobile platform, the device restricts the end-effector's motion to five degree-of-freedom and can measure position of the end-effector and one of its rotations. Numerical analyses of the identification Jacobian reveal that all parameters are identifiable. Computer simulations show that the identification is robust for the errors in the initial guess and the measurement noise. Intrinsic inaccuracies of the device can significantly deteriorate the calibration results. A measurement procedure is proposed and formulations of cost functions are discussed to prevent propagation of the inaccuracies to the calibration results.

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실해역 환경에서 무인 잠수정의 초기 상태 정렬을 위한 GPS와 관성 항법 센서 기반 항법 정렬 알고리즘 (GPS and Inertial Sensor-based Navigation Alignment Algorithm for Initial State Alignment of AUV in Real Sea)

  • 김규현;이지홍;이필엽;김호성;이한솔
    • 로봇학회논문지
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    • 제15권1호
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    • pp.16-23
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    • 2020
  • This paper describes an alignment algorithm that estimates the initial heading angle of AUVs (Autonomous Underwater Vehicle) for starting navigation in a sea area. In the basic dead reckoning system, the initial orientation of the vehicle is very important. In particular, the initial heading value is an essential factor in determining the performance of the entire navigation system. However, the heading angle of AUVs cannot be measured accurately because the DCS (Digital Compass) corrupted by surrounding magnetic field in pointing true north direction of the absolute global coordinate system (not the same to magnetic north direction). Therefore, we constructed an experimental constraint and designed an algorithm based on extended Kalman filter using only inertial navigation sensors and a GPS (Global Positioning System) receiver basically. The value of sensor covariance was selected by comparing the navigation results with the reference data. The proposed filter estimates the initial heading angle of AUVs for navigation in a sea area and reflects sampling characteristics of each sensor. Finally, we verify the performance of the filter through experiments.

새로운 측정장비를 이용한 병렬구조 로봇의 보정에 관한 (Calibration of Parallel Manipulators using a New Measurement Device)

  • 압둘라우프;김성관;류제하
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2003년도 추계학술대회
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    • pp.1494-1499
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    • 2003
  • Kinematic calibration is a process whereby the actual values of geometric parameters are estimated so as to minimize the error in absolute positioning. Measuring all components of Cartesian posture, particularly the orientation, can be difficult. With partial pose measurements, all parameters may not be identifiable. This paper proposes a new device that can be used to identify all kinematic parameters with partial pose measurements. Study is performed for a six degree-of-freedom fully parallel Hexa Slide manipulator. The device, however, is general and can be used for other parallel manipulators. The proposed device consists of a link with U joints on both sides and is equipped with a rotary sensor and a biaxial inclinometer. When attached between the base and the mobile platform, the device restricts the end-effector's motion to five degree-of-freedom and can measure position of the end-effector and one of its rotations. Numerical analyses of the identification Jacobian reveal that all parameters are identifiable. Computer simulations show that the identification is robust for the errors in the initial guess and the measurement noise.

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IMU/GPS와 카메라 좌표계간의 물리적 관계를 위한 수학적 모델링 (Mathematical Modeling for the Physical Relationship between the Coordinate Systems of IMU/GPS and Camera)

  • 전재춘
    • 한국측량학회지
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    • 제26권6호
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    • pp.611-616
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    • 2008
  • 모바일 매핑시스템 (Mobile Mapping Systems)에 장착된 카메라로부터, 3차원 데이터를 취득시, 취득된 3차원 데이터의 정밀도를 결정하는 중요한 요소 중 하나는 IMU/GPS와 카메라 좌표계간의 상대적인 위치(lever-arm)와 자세(bore-sight) 얼라인먼트이다. 기존 연구는 지상기준점(GPS)을 통하여 카메라의 절대표정을 계산하기 때문에, 하나의 좌표계 (GPS 좌표계) 상에서 이 얼라인먼트가 이루어진다. 이 방법은 GCP을 기본적으로 필요로 하는 단점이 있다. 본 논문에서는 GCP가 필요하지 않고, 연관성이 없는 카메라 데이터와 IMU/GPS 데이터를 통하여 이 두좌표계 간의 얼라인먼트를 계산하는 수학적 모델링을 제시한다.

광학식 3차원 좌표측정장치를 이용한 관성항법센서와 기체의 정렬기법 (Alignment of Inertial Navigation Sensor and Aircraft Fuselage Using an optical 3D Coordinate Measuring Device)

  • 김정호;이대우
    • 한국항공우주학회지
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    • 제47권1호
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    • pp.41-48
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    • 2019
  • 본 논문은 광학적인 방법을 통해 얻은 3차원 좌표들을 이용하여 항공기 동체와 관성항법센서를 정렬하는 방법에 대하여 다루고 있다. 기존에 가공되어 있는 마운트 홀의 제작 정확도를 신뢰하고 장착하던 관행에서 나아가 관성항법센서의 좌표계와 항공기 동체의 기준좌표계를 보다 정확하게 정렬하기 위한 방법에 대해 소개하고 있으며, 실현가능성을 검증하기 위해 실제 3차원 좌표측정장치의 오차 수준을 반영한 시뮬레이션을 통해 정렬 성능을 검증하였다. 또한 광학센서와 관성항법센서의 최적화 기법 기반 정렬 방법을 기술하였다.

The clustering of critical points in the evolving cosmic web

  • Shim, Junsup;Codis, Sandrine;Pichon, Christophe;Pogosyan, Dmitri;Cadiou, Corentin
    • 천문학회보
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    • 제46권1호
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    • pp.47.2-47.2
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    • 2021
  • Focusing on both small separations and baryonic acoustic oscillation scales, the cosmic evolution of the clustering properties of peak, void, wall, and filament-type critical points is measured using two-point correlation functions in ΛCDM dark matter simulations as a function of their relative rarity. A qualitative comparison to the corresponding theory for Gaussian random fields allows us to understand the following observed features: (i) the appearance of an exclusion zone at small separation, whose size depends both on rarity and signature (i.e. the number of negative eigenvalues) of the critical points involved; (ii) the amplification of the baryonic acoustic oscillation bump with rarity and its reversal for cross-correlations involving negatively biased critical points; (iii) the orientation-dependent small-separation divergence of the cross-correlations of peaks and filaments (respectively voids and walls) that reflects the relative loci of such points in the filament's (respectively wall's) eigenframe. The (cross-) correlations involving the most non-linear critical points (peaks, voids) display significant variation with redshift, while those involving less non-linear critical points seem mostly insensitive to redshift evolution, which should prove advantageous to model. The ratios of distances to the maxima of the peak-to-wall and peak-to-void over that of the peak-to-filament cross-correlation are ~2-√~2 and ~3-√~3WJ, respectively, which could be interpreted as the cosmic crystal being on average close to a cubic lattice. The insensitivity to redshift evolution suggests that the absolute and relative clustering of critical points could become a topologically robust alternative to standard clustering techniques when analysing upcoming surveys such as Euclid or Large Synoptic Survey Telescope (LSST).

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