• 제목/요약/키워드: 3D-fitting model

검색결과 148건 처리시간 0.029초

19~59세 성인여성과 비교한 가상인체의 부위별 치수분석 (A Study on the Reality of Avatar Sizes Comparing with Body Sizes of Women Aged 19 to 59)

  • 강여선
    • 한국의류학회지
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    • 제38권6호
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    • pp.896-912
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    • 2014
  • This study analyzed the reality of avatar size when it was automatically changed by different height and waist circumference inputs. This study focused on analyzing 22 of 28 avatar parts created by the 3D Clo virtual fitting program, based on the height and 'waist circumference of 2,247 woman samples from the $6^{th}$ Size Korea survey data. The 'waist back L'. and 'bishoulder L'. of the avatars were shorter than the bodies; however, the avatars' 'waist H'. and 'arm L'. were longer. Differences between the avatar and body increased in the taller groups. The body proportion of tall avatars was more distorted than small avatars. There were also some exaggerations in some circumferences. The 'bust C'. of the avatar was larger in the group with thin upper torsos; however, the 'hip C'. and 'upper arm C'. were larger in the group with thick upper torsos. The avatar torso silhouette of each somatotype was not representative of the real body silhouette as the 'hip C'. and 'bust C'. always increased together.

부정확한 속도 모델을 가정한 진원 결정 방법의 성능평가: 지표면 미소지진 모니터링 사례 (Performance Test of Hypocenter Determination Methods under the Assumption of Inaccurate Velocity Models: A case of surface microseismic monitoring)

  • 우정웅;이준기;강태섭
    • 지구물리와물리탐사
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    • 제19권1호
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    • pp.1-10
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    • 2016
  • 셰일가스 개발 과정에서 수압 파쇄에 의해 발생하는 미소지진의 진원 분포는 균열대의 특성을 파악하는 데 필요한 중요한 정보를 제공한다. 본 연구에서는 가상의 진원에 대하여 부정확한 속도 구조 모델이 선형 역산법을 이용한 진원 결정 프로그램인 hypoellipse와 hypoDD의 결과에 어떠한 영향을 미치는 지에 대해서 알아보았다. 총 98개의 가상 관측소를 반경 4 km의 원내에 배치하였고, 25개의 지진들이 판상으로 분포한 가상 지진 세트를 관측망의 중심부에서부터 남쪽으로 1 km 간격으로 5곳에 배치하였다(S0 ~ S4). 역산 결과의 정확성을 정량적으로 평가하기 위해 진원들의 평균 위치의 차이를 의미하는 $d_1$, 가정한 진원에 대한 면적비 r, 근사 평면과 실제 평면의 경사 차이 ${\theta}$, 근사 평면과 실제 평면의 주향 차이 ${\phi}$, 근사 평면으로부터 진원들이 떨어진 거리의 제곱평균제곱근 $d_2$, 평면상에서의 진원들의 패턴의 정확성 $d_3$의 6가지 파라미터를 정의하였다. 층상 구조를 가정한 기준 속도 구조를 만들어 합성 주시자료를 계산하였으며, 속도 구조의 부정확성을 고려하기 위하여 진원 역산에 사용한 속도 구조 모델은 각 층의 기준 속도를 중심으로 0.1 km/s, 0.2 km/s, 및 0.3 km/s의 표준편차를 가지는 정규분포를 이용하여 구성하였다. 속도의 부정확성에 비례하여 오차가 커지는 파라미터에는 $d_1$, r, ${\theta}$, 및 $d_3$가 있으며, 나머지 두 파라미터는 S4의 경우를 제외하면 속도 부정확성의 정도와 관계없이 일정한 오차를 보여준다. S0, S1, S2, S3의 경우, hypoellipse와 hypoDD 모두 비슷한 $d_1$ 값을 나타낸다. 하지만 다른 파라미터의 경우 hypoDD가 훨씬 나은 결과를 보여주며, 진원의 상대적 오차는 속도 구조의 부정확도와 관계없이 수 미터 이하이다. 수압 파쇄의 부피 양상을 알기 위한 목적으로 상대적 진원 위치 부정확성을 수 미터 이내로 제한시키기 위해서 hypoellipse에서는 0.2 km/s 이내의 속도 오차의 표준편차를 가져야하며, hypoDD에서는 속도 오차의 표준편차 값이 0.3 km/s일 때에도 상대적 진원 위치 오차를 수 미터 이내로 제한시킬 수 있다.

Development of Simple Articulated Human Models using Superquadrics for Dynamic Analysis

  • Lee, Hyun-Min;Kim, Jay-Jung;Chae, Je-Wook
    • 대한인간공학회지
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    • 제30권6호
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    • pp.715-725
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    • 2011
  • Objective: This study is aimed at developing Articulated Human Models(AHM) using superquadrics to improve the geometric accuracy of the body shape. Background: The previous work presents the AHM with geometrical simplification such as ellipsoids to improve analysis efficiency. However, because of the simplicity, their physical properties such as a center of mass and moment of inertia are computed with errors compared to their actual values. Method: This paper introduces a three steps method to present the AHM with superquadrics. First, a 3D whole body scan data are divided into 17 body segments according to body joints. Second, superquadric fitting is employed to minimize the Euclidean distance between body segments and superquadrics. Finally, Fee-Form Deformation is used to improve accuracy over superquadric fitting. Results: Our computational experiment shows that the superquadric models give better accuracy of dynamic analysis than that of ellipsoid ones. Conclusion: We generate the AHM composed of 17 superquadrics and 16 joints using superquadric fitting. Application: The AHM using superquadrics can be used as the base model for dynamics and ergonomics applications with better accuracy because it presents the human motion effectively.

컴퓨터를 이용한 의료 진단용 3차원 척추 제네릭 모델 (3D Generic Vertebra Model for Computer Aided Diagnosis)

  • 이주성;백승엽;이건우
    • 한국CDE학회논문집
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    • 제15권4호
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    • pp.297-305
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    • 2010
  • Medical image acquisition techniques such as CT and MRI have disadvantages in that the numerous time and efforts are needed. Furthermore, a great amount of radiation exposure is an inherent proberty of the CT imaging technique, a number of side-effects are expected from such method. To improve such conventional methods, a number of novel methods that can obtain 3D medical images from a few X-ray images, such as algebraic reconstruction technique (ART), have been developed. Such methods deform a generic model of the internal body part and fit them into the X-ray images to obtain the 3D model; the initial shape, therefore, affects the entire fitting process in a great deal. From this fact, we propose a novel method that can generate a 3D vertebraic generic model based on the statistical database of CT scans in this study. Moreover, we also discuss a method to generate patient-tailored generic model using the facts obtained from the statistical analysis. To do so, the mesh topologies of CT-scanned 3D vertebra models are modified to be identical to each other, and the database is constructed based on them. Furthermore, from the results of a statistical analysis on the database, the tendency of shape distribution is characterized, and the modeling parameters are extracted. By using these modeling parameters for generating the patient-tailored generic model, the computational speed and accuracy of ART can greatly be improved. Furthermore, although this study only includes an application to the C1 (Atlas) vertebra, the entire framework of our method can be applied to other body parts generally. Therefore, it is expected that the proposed method can benefit the various medical imaging applications.

S-CODE: A Subdivision Based Coding System for CAD Models

  • Takarada, Yosuke;Takeuchi, Shingo;Kawano, Isao;Hotta, Jun;Suzuki, Hiromasa
    • International Journal of CAD/CAM
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    • 제3권1_2호
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    • pp.97-109
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    • 2003
  • A large scale polygon models are often used to approximately represent 3D CAD models in Digital Engineering environment such as DMU (Digital Mockups) and network based collaborative design. However, they are not suitable for distribution on the network and for interactive rendering. We introduce a new coding system based on subdivision schemes called S-CODE system. In this system, it is possible to highly compress the model with sufficient accuracy and to view the model efficiently in a level of detail (LOD) fashion. The method is based on subdivision surface fitting by which a subdivision surface and curves which approximate a face of a CAD model are generated. We also apply a subdivision method to analytic surfaces such as conical and cylindrical surfaces. A prototype system is developed and used for evaluation with reasonably complicated data. The results show that the method is useful as a CAD data coding system.

Three-dimensional Shape Recovery from Image Focus Using Polynomial Regression Analysis in Optical Microscopy

  • Lee, Sung-An;Lee, Byung-Geun
    • Current Optics and Photonics
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    • 제4권5호
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    • pp.411-420
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    • 2020
  • Non-contact three-dimensional (3D) measuring technology is used to identify defects in miniature products, such as optics, polymers, and semiconductors. Hence, this technology has garnered significant attention in computer vision research. In this paper, we focus on shape from focus (SFF), which is an optical passive method for 3D shape recovery. In existing SFF techniques using interpolation, all datasets of the focus volume are approximated using one model. However, these methods cannot demonstrate how a predefined model fits all image points of an object. Moreover, it is not reasonable to explain various shapes of datasets using one model. Furthermore, if noise is present in the dataset, an error will be generated. Therefore, we propose an algorithm based on polynomial regression analysis to address these disadvantages. Our experimental results indicate that the proposed method is more accurate than existing methods.

FCC구조에서 포논분산과 비열 (Phonon Dispersion and Specific Heat in FCC Structure)

  • 정재동;이경태
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2004년도 추계학술대회
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    • pp.1207-1212
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    • 2004
  • A model for the phonon dispersion relationship for cubic zinc sulfide structure, for example SiC, is developed in terms of two unknown force constants. Born model that incorporates bond bending and bond stretching, is used for the force constants. The force constants are determined by fitting to experimental data. Using only the nearest-neighbor coupling results in $6{\times}6$ sized dynamic matrix. The eigenvalues of dynamics matrix for each wavenumber in 3-D ${\kappa}$ space correspond to frequencies, 3 for optical phonon and 3 for acoustic phonon, which is so-called dispersion relation (${\kappa}$-${\omega}$). The density of state is determined by counting the states for each frequency bin, and the properties such as specific heat and thermal conductivity can be obtained. The specific heat is estimated on this model and compared with experiment and other models, i.e. Debye model, Einstein model and combined Debye-Einstein model. In spite of the simple bond potential model, reasonable agreements are found.

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다중센서 데이터를 이용한 구조물의 3차원 모델링 (The Three Dimensional Modeling Method of Structure in Urban Areas using Airborne Multi-sensor Data)

  • 손호웅;김기영;김영경
    • 지구물리
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    • 제9권1호
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    • pp.7-19
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    • 2006
  • Laser scanning is a new technology for obtaining Digital Surface Models(DSM) of the earth surface.It is a fast method for sampling the earth surface with high density and high point accuracy. This paper is for buildings extraction from LiDAR points data. The core part of building construction is based on a parameters filter for distinguishing between terrain and non-terrain laser points. The 3D geometrical properties of the building facades are obtained based on plane fitting using least-squares adjustment. The reconstruction part of the procedure is based on the adjacency among the roof facades. Primitive extraction and facade intersections are used for building reconstruction. For overcome the difficulty just reconstruct of laser points data used with digital camera images. Also, 3D buildings of city area reconstructed using digital map. Finally, In this paper show 3D building Modeling using digital map and LiDAR data.

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얼굴 깊이 추정을 이용한 3차원 얼굴 생성 및 추적 방법 (A 3D Face Reconstruction and Tracking Method using the Estimated Depth Information)

  • 주명호;강행봉
    • 정보처리학회논문지B
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    • 제18B권1호
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    • pp.21-28
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    • 2011
  • 얼굴의 3차원 정보는 얼굴 인식이나 얼굴 합성, Human Computer Interaction (HCI) 등 다양한 분야에서 유용하게 이용될 수 있다. 그러나 일반적으로 3차원 정보는 3D 스캐너와 같은 고가의 장비를 이용하여 획득되기 때문에 얼굴의 3차원 정보를 얻기 위해서는 많은 비용이 요구된다. 본 논문에서는 일반적으로 손쉽게 얻을 수 있는 2차원의 얼굴 영상 시퀀스로부터 효과적으로 3차월 얼굴 형태를 추적하고 재구성하기 위한 3차원 Active Appearance Model (3D-AAM) 방법을 제안한다. 얼굴의 3차원 변화 정보를 추정하기 위해 학습 영상은 정면 얼굴 포즈로 다양한 얼굴 표정 변화를 포함한 영상과 표정 변화를 갖지 않으면서 서로 크게 다른 얼굴 포즈를 갖는 영상으로 구성한다. 입력 영상의 3차원 얼굴 변화를 추정하기 위해 먼저 서로 다른 포즈를 갖는 학습 영상으로부터 얼굴의 각 특징점(Land-mark)의 기하학적 변화를 이용하여 깊이 정보를 추정하고 추정된 특징점의 깊이 정보를 입력 영상의 2차원 얼굴 변화에 추가하여 최종적으로 입력 얼굴의 3차원 변화를 추정한다. 본 논문에서 제안된 방법은 얼굴의 다양한 표정 변화와 함께 3차원의 얼굴 포즈 변화를 포함한 실험 영상을 이용하여 기존의 AAM에 비해 효과적이면서 빠르게 입력 얼굴을 추적(Fitting)할 수 있으며 입력 영상의 정확한 3차원 얼굴 형태를 생성할 수 있음을 보였다.