• 제목/요약/키워드: Physics based deformation

검색결과 56건 처리시간 0.031초

증강현실 환경을 이용한 효율적인 물리기반 형상변형 기술 (An Effective Physics Based Deformation Technique Using Augmented Reality Environments)

  • 최한균;김현수;박민기;이관행
    • 한국HCI학회:학술대회논문집
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    • 한국HCI학회 2009년도 학술대회
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    • pp.90-93
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    • 2009
  • 물리기반 형상변형 기술은 게임 및 시뮬레이션과 같은 분야를 중심으로 점차 그 사용이 증가하는 추세이고 이에 대한 다양한 연구가 이루어지고 있다. 하지만 아직까지 3 차원 객체와 물리기반 변형기술간의 상호작용을 증대시키기 위한 연구는 원활이 이루어지지 않고 있다. 본 연구는 사용자의 몰입감을 증가시키고 변형의 효율성을 높이기 위해서 증강현실 환경을 이용한 물리기반 형상변형을 제안한다. 증강현실 환경 하의 시스템에서 3 차원 객체와 사용자의 효율적인 상호작용을 위해서는 물리기반 형상변형이 실시간으로 이루어져야 한다. 제안된 방법에서는, RBF(Radial Basis Function) [1] 와 LSM (Lattice Shape Matching) [2, 3]방법을 조합해서 메쉬 모델에 적용하였다. 또한, 물리기반 형상변형을 위해 lattice shape matching 의 동적 움직임을 계산하였다. 최종적으로, 이러한 방법들을 증강현실 환경 하에서 구현하였다.

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Equivalence Principles Based Skin Deformation of Character Animation

  • You, L.H.;Chaudhry, E.;You, X.Y.;Zhang, Jian J.
    • International Journal of CAD/CAM
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    • 제9권1호
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    • pp.61-69
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    • 2010
  • Based on the equivalence principles of physical properties, geometric properties and externally applied forces between a surface and the corresponding curves, we present a fast physics and example based skin deformation method for character animation in this paper. The main idea is to represent the skin surface and its deformations with a group of curves whose computation incurs much less computing overheads than the direct surface-based approach. The geometric and physical properties together with externally applied forces of the curves are determined from those of the surface defined by these curves according to the equivalence principles between the surface and the curves. This ensures the curve-based approach is equivalent to the original problem. A fourth order ordinary differential equation is introduced to describe the deformations of the curves between two example skin shapes which relates geometric and physical properties and externally applied forces to shape changes of the curves. The skin deformation is determined from these deformed curves. Several examples are given in this paper to demonstrate the application of the method.

방향성 입자를 이용한 ARAP 동적 변형 (As-Rigid-As-Possible Dynamic Deformation with Oriented Particles)

  • 최민규
    • 한국게임학회 논문지
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    • 제17권1호
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    • pp.89-98
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    • 2017
  • 본 논문에서는 물리기반 동적 변형을 실시간에 안정적으로 시뮬레이션하는 새로운 ARAP(as-rigid-as-possible) 방법을 제안한다. 1, 2, 3차원 물체의 변형을 안정적이며, 빠르고, 일관성 있게 다루기 위하여 방향성 입자로 이루어진 변형 그래프를 도입하고 그에 따른 ARAP 변형에너지를 공식화한다. 방향성 입자의 안정적인 시간 적분을 위해서는 변분 공식화에 기반을 둔 내재적 시간 적분 기법을 개발한다. 또한 국지적/전역적 최적화를 교대로 반복 적용하여 방향성 입자의 최적 위치 및 회전을 구한다. 제안된 방법은 구현이 쉽고 복잡한 변형을 실시간에 시뮬레이션할 수 있을 정도로 빠르다.

동적 변형의 회전 성분을 효율적으로 추출하기 위한 실용적 방법 (A Practical Method for Efficient Extraction of the Rotational Part of Dynamic Deformation)

  • 최민규
    • 한국게임학회 논문지
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    • 제18권1호
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    • pp.125-134
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    • 2018
  • 본 논문에서는 시간에 따라 연속적으로 변하는 $3{\times}3$ 행렬의 회전 성분을 효율적으로 추출하는 실용적인 방법을 제안한다. 이는 물리기반 동적 변형을 위하여 널리 사용되는 공회전 유한 요소법이나 형상 맞춤 변형에서 매우 중요한 기술이다. 최근 극분해를 사용하는 시간 독립적인 기존 방법들과 달리 회전행렬 추출을 물리적으로 공식화한 후, 점진적 회전 표현법을 이용하는 반복법이 제안되었다. 본 논문에서는 점진적 회전 벡터의 최대 회전각을 ${\pi}/2$ 이내로 제한함으로써 반복 횟수를 줄이는 최적화 기법을 개발한다. 사실적인 동적 변형 시뮬레이션에서는 충분히 작은 시간 간격을 사용하기 때문에 이러한 제한은 실용적으로 문제가 되지 않는다. 다양한 실험을 통해 제안된 방법의 효율성 및 실용성을 보인다.

고에너지 물질 연소를 기반으로 한 Multi Physics Modeling (How to Prepare the Manuscript for Submission to the Proceedings of KSPE Conference)

  • 김기홍;여재익
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2007년도 제28회 춘계학술대회논문집
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    • pp.238-241
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    • 2007
  • We present an innovative method of multi-physics application involving energetic materials. Energetic materials are related to reacting flows in extreme environments such as fires and explosions. They typically involve high pressure, hish temperature, strong non-linear shock waves, and high strain rate deformation of metals. We use an Eulerian methodology to address these problems. Our approach is naturally free from large deformation of materials that makes it suitable for high strain-rate multi-material interaction problems. Furthermore we eliminate the possible interface smearing by using the level sets. We have devised a new level set based tracking framework that can elegantly handle large gradients typically found in reacting gases and metals. We show several work-in-progress applications of our algorithm including the Taylor impact test, explosive venting and additional confined explosion problems of modem interest.

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A new moving-mesh Finite Volume Method for the efficient solution of two-dimensional neutron diffusion equation using gradient variations of reactor power

  • Vagheian, Mehran;Ochbelagh, Dariush Rezaei;Gharib, Morteza
    • Nuclear Engineering and Technology
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    • 제51권5호
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    • pp.1181-1194
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    • 2019
  • A new moving-mesh Finite Volume Method (FVM) for the efficient solution of the two-dimensional neutron diffusion equation is introduced. Many other moving-mesh methods developed to solve the neutron diffusion problems use a relatively large number of sophisticated mathematical equations, and so suffer from a significant complexity of mathematical calculations. In this study, the proposed method is formulated based on simple mathematical algebraic equations that enable an efficient mesh movement and CV deformation for using in practical nuclear reactor applications. Accordingly, a computational framework relying on a new moving-mesh FVM is introduced to efficiently distribute the meshes and deform the CVs in regions with high gradient variations of reactor power. These regions of interest are very important in the neutronic assessment of the nuclear reactors and accordingly, a higher accuracy of the power densities is required to be obtained. The accuracy, execution time and finally visual comparison of the proposed method comprehensively investigated and discussed for three different benchmark problems. The results all indicated a higher accuracy of the proposed method in comparison with the conventional fixed-mesh FVM.

Innovative Modeling and Simulation of Reacting Flow with Complex Confined Boundaries

  • Kim, Ki-Hong;Yoh, Jai-Ick
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2008년 영문 학술대회
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    • pp.311-319
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    • 2008
  • We present an innovative method of multi physics application involving energetic materials. Energetic materials are related to reacting flows in extreme environments such as fires and explosions. They typically involve high pressure, high temperature, strong shock waves and high strain rate deformation of metals. We use an Eulerian methodology to address these problems. Our approach is naturally free from large deformation of materials that make it suitable for high strain rate multi-material interacting problems. Furthermore we eliminate the possible interface smearing by using the level sets. We heave devised a new level set based tracking framework that can elegantly handle large gradients typically found in reacting gases and metals. We show several work-in-progress application of our integrated framework.

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Effect of Deformation Temperature on Crystal Texture Formation in Hot Deformed Nanocrystalline SmCo5 Permanent Magnets

  • Ma, Q.;Yue, M.;Lv, W.C.;Zhang, H.G.;Yuan, X.K.;Zhang, D.T.;Zhang, X.F.;Zhang, J.X.;Gao, X.X.
    • Journal of Magnetics
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    • 제21권1호
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    • pp.25-28
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    • 2016
  • In the present study, bulk anisotropic nanocrystalline $SmCo_5$ magnets were prepared by hot deformation. The effect of deformation temperature on the texture and magnetic properties are presented, based on which the mechanism of plastic deformation and texture formation during the hot deformation process is discussed. Our analyses reveal that deformation temperature is one of the most important parameters that determine the texture of $SmCo_5$ grains. We suggest that diffusion creep plastic deformation occurs during hot deformation, which is very sensitive to the energy gain provided by an increase in temperature.

가는 막대의 물리기반 실시간 시뮬레이션 (Physics-Based Real-Time Simulation of Thin Rods)

  • 최민규
    • 한국컴퓨터그래픽스학회논문지
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    • 제16권2호
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    • pp.1-7
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    • 2010
  • 본 논문에서는 큰 회전 변형이 일어나는 가는 막대를 실시간에 시뮬레이션하는 기법을 제안한다. 가는 막대는 로프나 머리카락과 같이 일차원적인 구조를 표현하는데 널리 사용될 수 있다. 시각적으로 사실적인 가는 막대의 애니메이션을 실시간에 생성하는 것은 컴퓨터 그래픽스분야에서 오랫동안 주요한 도전 과제였다. 본 논문에서는 연속체 역학에 기반한 지배방정식을 세우고 이를 실시간에 적분하는 가는 막대구조를 위한 모달와핑기법을 개발한다. 이와같은 새로운 시뮬레이션 기법은 삼차원 솔리드를 위해 개발된 종전의 모달 와핑 기법을 확장한 것이다. 본 논문에서 제안한 방법은 매우 많은 정점으로 이루어진 가는 막대 구조의 큰 휨과 꼬임변형도 실시간에 사실적으로 생성할 수 있다.

Deformation estimation of truss bridges using two-stage optimization from cameras

  • Jau-Yu Chou;Chia-Ming Chang
    • Smart Structures and Systems
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    • 제31권4호
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    • pp.409-419
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    • 2023
  • Structural integrity can be accessed from dynamic deformations of structures. Moreover, dynamic deformations can be acquired from non-contact sensors such as video cameras. Kanade-Lucas-Tomasi (KLT) algorithm is one of the commonly used methods for motion tracking. However, averaging throughout the extracted features would induce bias in the measurement. In addition, pixel-wise measurements can be converted to physical units through camera intrinsic. Still, the depth information is unreachable without prior knowledge of the space information. The assigned homogeneous coordinates would then mismatch manually selected feature points, resulting in measurement errors during coordinate transformation. In this study, a two-stage optimization method for video-based measurements is proposed. The manually selected feature points are first optimized by minimizing the errors compared with the homogeneous coordinate. Then, the optimized points are utilized for the KLT algorithm to extract displacements through inverse projection. Two additional criteria are employed to eliminate outliers from KLT, resulting in more reliable displacement responses. The second-stage optimization subsequently fine-tunes the geometry of the selected coordinates. The optimization process also considers the number of interpolation points at different depths of an image to reduce the effect of out-of-plane motions. As a result, the proposed method is numerically investigated by using a truss bridge as a physics-based graphic model (PBGM) to extract high-accuracy displacements from recorded videos under various capturing angles and structural conditions.