• 제목/요약/키워드: 3D Coordinates

검색결과 613건 처리시간 0.026초

3차원 유한요소분석에 의한 소형견의 견치와 열육치의 교합력 방향 분석 (Analysis of the direction of the canine and carnassial of small dog by 3D FEM)

  • 박유진;최성민
    • 대한치과기공학회지
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    • 제42권2호
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    • pp.139-145
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    • 2020
  • Purpose: This study is for the prosthesis of dog. Observed the occlusal relation between the small dog canine and carnassial teeth. The direction of the bite force was analyzed by 3D FEM(finite element method). Methods: The mandibular canine and carnassial of dog were tested. The skull of dog was contact point confirmed by dental CAD. The skull of dog was scaned using CT and a 3D model was created. The 3D model was analyzed ABAQUS. Closing movement has been 100N, 200N, 300N, 500N, 1000N, 1500N. The Direction of bite force was confirmed. Results: As occlusal force increased, the direction of bite force appeared to (-y), (-x,-y,-z), (-x,-y), (-x,-y,+z), (-x,-y,+ z), (+x,-y) in mandibular left canine. And the direction was seen at (+x, -y), (+x,-y,-z), (+x,-y), (-x,-y,+z), (-x,-y,+z), (+x,-y). When the occlusal load is 100 N, 200 N, 300 N, 500 N, the direction of the mandibular carnassial appears as (-x, -y, -z), and when the occlusal load is 1000 N, 1500 N, the direction appears as (-x,-y). Conclusion: The mandibular canine showed irregularities in the coordinates of the direction of the bite force, and the mandibular carnassial showed regularity in the coordinates of the direction of the bite force.

Markerless camera pose estimation framework utilizing construction material with standardized specification

  • Harim Kim;Heejae Ahn;Sebeen Yoon;Taehoon Kim;Thomas H.-K. Kang;Young K. Ju;Minju Kim;Hunhee Cho
    • Computers and Concrete
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    • 제33권5호
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    • pp.535-544
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    • 2024
  • In the rapidly advancing landscape of computer vision (CV) technology, there is a burgeoning interest in its integration with the construction industry. Camera calibration is the process of deriving intrinsic and extrinsic parameters that affect when the coordinates of the 3D real world are projected onto the 2D plane, where the intrinsic parameters are internal factors of the camera, and extrinsic parameters are external factors such as the position and rotation of the camera. Camera pose estimation or extrinsic calibration, which estimates extrinsic parameters, is essential information for CV application at construction since it can be used for indoor navigation of construction robots and field monitoring by restoring depth information. Traditionally, camera pose estimation methods for cameras relied on target objects such as markers or patterns. However, these methods, which are marker- or pattern-based, are often time-consuming due to the requirement of installing a target object for estimation. As a solution to this challenge, this study introduces a novel framework that facilitates camera pose estimation using standardized materials found commonly in construction sites, such as concrete forms. The proposed framework obtains 3D real-world coordinates by referring to construction materials with certain specifications, extracts the 2D coordinates of the corresponding image plane through keypoint detection, and derives the camera's coordinate through the perspective-n-point (PnP) method which derives the extrinsic parameters by matching 3D and 2D coordinate pairs. This framework presents a substantial advancement as it streamlines the extrinsic calibration process, thereby potentially enhancing the efficiency of CV technology application and data collection at construction sites. This approach holds promise for expediting and optimizing various construction-related tasks by automating and simplifying the calibration procedure.

로보트 팔에 부착된 카메라를 이용한 3차원 측정방법 (Axial motion stereo method)

  • 이상용;한민홍
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 1991년도 한국자동제어학술회의논문집(국내학술편); KOEX, Seoul; 22-24 Oct. 1991
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    • pp.1192-1197
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    • 1991
  • This paper describes a method of extracting the 3-D coordinates of feature points of an object from two images taken by one camera. The first image is from a CCD camera before approaching the object and the second image is from same camera after approaching the object along the optical axis. In the two images, the feature points appear at different position on the screen due to image enlargement. From the change of positions of feature points their world coordinates are calculated. In this paper, the correspondence problem is solved by image shrinking and correlation.

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무인항공영상 기반 3D 모델의 세밀도와 위치정확도 평가 (Assessment of LODs and Positional Accuracy for 3D Model based on UAV Images)

  • 이재원;김두표;성상민
    • 한국산학기술학회논문지
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    • 제21권10호
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    • pp.197-205
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    • 2020
  • 무인항공사진측량은 기존의 유인항공사진측량에 비하여 고해상도의 영상을 신속하게 취득하여 활용할 수 있다는 장점이 있다. 특히, 무인항공사진측량을 이용한 3차원 공간정보의 활용성이 커지는 시점에서 무인항공사진측량을 이용한 3차원 모델 제작은 상당히 중요한 문제이다. 이에 본 연구에서는 무인항공사진측량을 이용하여 3차원 모델을 제작하고 정성적 및 정량적 분석을 통하여 활용 가능성을 판단하고자 하였다. 정성적 분석은 3차원 국토공간정보 구축 작업규정에 명시된 세밀도를 이용하여 분석하였다. 그 결과 평면상에 존재하는 지형·지물의 경우 높은 세밀도 Level을 보였지만, 고저차가 있는 지형·지물의 경우 폐색지역 및 시차로 인하여 낮은 세밀도 Level을 나타냈다. 정량적 분석은 검사점과 주변 구조물에서 취득한 3차원 좌표를 이용하여 분석하였다. 그 결과 검사점의 경우 평균오차가 평면에서 0.042~0.059 m, 표고에서 0.050~0.161 m로 나타났으며 구조물의 모서리를 이용한 정확도 분석 결과는 평균오차가 평면에서 0.068 m, 표고에서 0.071 m로 나타났다. 따라서, 무인항공사진측량에 의한 3차원 모델은 디지털 트윈, 사면 경사도 분석 및 BIM분야에도 활용 가능성이 있다고 판단된다.

자율 이동로봇의 경로추정을 위한 적응적 공간좌표 검출 기법 (Adaptive Spatial Coordinates Detection Scheme for Path-Planning of Autonomous Mobile Robot)

  • 이정석;고정환
    • 전기학회논문지P
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    • 제55권2호
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    • pp.103-109
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    • 2006
  • In this paper, the detection scheme of the spatial coordinates based on stereo camera for a intelligent path planning of an automatic mobile robot is proposed. In the proposed system, face area of a moving person is detected from a left image among the stereo image pairs by using the YCbCr color model and its center coordinates are computed by using the centroid method and then using these data, the stereo camera embedded on the mobile robot can be controlled for tracking the moving target in real-time. Moreover, using the disparity mad obtained from the left and right images captured by the tracking-controlled stereo camera system and the perspective transformation between a 3-D scene. and an image plane, depth information can be detected. Finally, based-on the analysis of these calculated coordinates, a mobile robot system is derived as a intelligent path planning and a estimation.

가상 양시점화 방법을 이용한 비전기반 3차원 손 인터페이스 (Vision based 3D Hand Interface Using Virtual Two-View Method)

  • 배동희;김진모
    • 한국게임학회 논문지
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    • 제13권5호
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    • pp.43-54
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    • 2013
  • 최근 3차원 분야의 지속적인 발전으로 인해 보다 사실적이고 실감나는 영상을 경험할 수 있게 되었고 게임과 같은 다양한 응용분야에서 활용가능하게 되었다. 특히 가상환경에서의 객체들과 상호작용하며 이를 제어하는 증강현실 분야에 많은 발전을 가져왔다. 본 연구는 한 대의 카메라를 활용한 가상 양시점화 방법을 통해 3차원 공간의 객체를 제어하는 3차원 사용자 인터페이스를 제안한다. 이를 위해 임의의 두 카메라 위치 사이의 변환 정보를 담고 있는 호모그래피(homography) 행렬을 계산하고, 한 대의 카메라에서 얻은 2차원 손 좌표, 호모그래피 행렬 그리고 카메라의 투영행렬을 이용하여 3차원 좌표의 복원을 수행한다. 이러한 방법을 통해 보다 정확하고 빠른 3차원 정보를 얻을 수 있게 된다. 이는 두 대의 카메라를 동시에 구동할 때보다 연산량이 감소하여 실시간 처리에 효과적일 수 있으며 경제적인 부담도 줄일 수 있는 장점을 가지고 있다.

Fast Generation Methods for Computer-Generated Hologram Using a Modified Recursive Addition Algorithm

  • Choi, Hyun-Jun
    • Journal of information and communication convergence engineering
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    • 제11권4호
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    • pp.282-287
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    • 2013
  • A real-time digital holographic display is the core technology for the next-generation 3DTV. Holographic display requires a considerably large amount of calculation. If generating a large number of digital holograms is intended, the amount of calculation and the time required increase exponentially. This is a significant obstacle in a real-time hologram service. This paper proposes an algorithm that increases the speed of generating a Fresnel hologram by using a recursive addition operation covering the entire coordinate array of a digital hologram. The 3D object designed to calculate the digital hologram uses a depth-map image produced by computer graphics. The proposed algorithm is a technique that performs the computer-generated holography (CGH) operation with only recursive addition of all of the hologram's coordinates by analyzing the regularity between the 3D object and the digital hologram coordinates. The experimental results show that the proposed algorithm increases the operation speed by 70% over the technique using the conventional CGH equation and by more than 30% over the previously proposed recursive technique.

Design and Implementation of 4S-Van: A Mobile Mapping System

  • Lee, Seung-Yong;Choi, Kyoung-Ho;Joo, In-Hak;Cho, Seong-Ik;Park, Jong-Hyun
    • ETRI Journal
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    • 제28권3호
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    • pp.265-274
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    • 2006
  • Recent advances in positioning and photogrammetry technologies have made it possible to build a mobile mapping system (MMS) that can obtain 3D coordinates of geographic objects from stereo images recorded from a moving vehicle. In this paper, we present a design and detailed implementation of an MMS called a 4S-Van. Furthermore, we present four issues that have made major contributions to the performance of an MMS: 1) CCD camera calibration, 2) GPS signal condition, 3) integrating a GPS, inertial navigation system (INS), distance measurement indicator (DMI), and CCD cameras, and 4) the orientation angle of CCD cameras. In the experimental results, the performance of an MMS was analyzed for each component, giving an idea of how to effectively design and integrate each component in developing an MMS to get a maximal accuracy of 3D coordinates.

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휴먼 헤드포즈 정보를 이용한 3차원 공간 내 응시점 추정 (Estimation of a Gaze Point in 3D Coordinates using Human Head Pose)

  • 신채림;윤상석
    • 한국정보통신학회:학술대회논문집
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    • 한국정보통신학회 2021년도 추계학술대회
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    • pp.177-179
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    • 2021
  • 본 논문은 실내 공간에서 상호작용 로봇이 사용자의 시선이 응시하는 목표지점의 위치정보를 추정하는 방법을 제안한다. 저가의 웹캠으로부터 RGB 영상을 추출하고, 얼굴검출(Openface)모듈로부터 사용자의 헤드포즈 정보를 획득한 후 기하학적 연산을 적용하여 3차원 공간 내 사용자의 응시방향을 추정하게 된다. 추정된 응시방향과 테이블 상의 평면과의 상관관계를 통하여 최종적으로 사용자가 응시하는 목표 지점의 좌표를 추정하게 된다.

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Three Degrees of Freedom Global Calibration Method for Measurement Systems with Binocular Vision

  • Xu, Guan;Zhang, Xinyuan;Li, Xiaotao;Su, Jian;Lu, Xue;Liu, Huanping;Hao, Zhaobing
    • Journal of the Optical Society of Korea
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    • 제20권1호
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    • pp.107-117
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    • 2016
  • We develop a new method to globally calibrate the feature points that are derived from the binocular systems at different positions. A three-DOF (degree of freedom) global calibration system is established to move and rotate the 3D calibration board to an arbitrary position. A three-DOF global calibration model is constructed for the binocular systems at different positions. The three-DOF calibration model unifies the 3D coordinates of the feature points from different binocular systems into a unique world coordinate system that is determined by the initial position of the calibration board. Experiments are conducted on the binocular systems at the coaxial and diagonal positions. The experimental root-mean-square errors between the true and reconstructed 3D coordinates of the feature points are 0.573 mm, 0.520 mm and 0.528 mm at the coaxial positions. The experimental root-mean-square errors between the true and reconstructed 3D coordinates of the feature points are 0.495 mm, 0.556 mm and 0.627 mm at the diagonal positions. This method provides a global and accurate calibration to unity the measurement points of different binocular vision systems into the same world coordinate system.