• Title/Summary/Keyword: 영역적 형상

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Human Motion Measurement with One Color Camera (한 대의 칼라카메라를 이용한 인체 운동량 측정)

  • 안정호
    • Journal of Biomedical Engineering Research
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    • v.22 no.1
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    • pp.41-47
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    • 2001
  • 본 연구는 한 대의 칼라 카메라와 광학장치를 이용하여 인체의 운동량을 측정하는 시스템에 관한 것이다. 광학을 이용하여 인체의 운동량을 측정하기 위해서는 일반적으로 두 대 이상의 카메라로부터 획득된 영상으로 측정물체에 대한 좌표를 구하는 입체화상법을 사용한다. 제시한 시스템은 서로 다른 색의 칼라필터와 거울을 통과한 두 개의 광경로를 빔스플리터로 중첩시켜서 한 대의 칼라카메라로 영상을 획득하여 분석하는 것으로, 한 대의 칼라카메라가 두 대의 단색 가상카메라 역할을 하는 것이다. 단색 가상카메라는 적색, 녹색과 청색의 세 가지로 본 실험에서는 적색의 밝기가 가장 낮아서 녹색과 청색 가상카메라를 사용하였다. 광학장치를 이용하여 칼라카메라로 획득된 적색, 녹색과 청색별로 8bit인 24bit 디지털영상에서 녹색과 청색 영상은 각각 녹색과 청색의 가상카메라로 획득한 영상이다. 이 영상들을 이진화하여 측정물체를 배경으로부터 분리하고, 이진영상에서 일정한 면적을 지닌 영역의 중심을 측정물체가 영상면에 투영된 좌표로 본다. 녹색과 청색 영상에서 동일한 측정물체에 대한 영상선을 구하고 이들의 교차점을 측정물체의 공간좌표로 하였다. 이 시스템을 이용하여 직립 및 신전자세에서 척추의 형상을 측정하였으며 향후 시스템의 추가적인 개발과 적응분야에 대하여도 살펴보았다.

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Airflow visualization and an interactive method for segmentation of 3D nasal airway (상호작용 기반 3차원 비강 모델 분할 및 가시화)

  • Seo, An-Na;Heo, Go-Eun;Kim, S.K.;Kim, Jee-In
    • Proceedings of the Korean Information Science Society Conference
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    • 2012.06c
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    • pp.320-322
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    • 2012
  • 코 내부의 복잡한 기하학적 형상으로 인해 nasal airway의 분리는 많은 어려움을 겪고 있다. 본 논문은 velocimetry of nasal airflow 와 코 수술 계획을 위하여 3차원 공간에서 nasal airway를 interactive semiautomatic으로 분리하고 시각화하는 방법을 제안한다. 제안하는 방법은 ROI(Region-Of-Interest)와 multi-seed 3d region growing(MS3RG)기법을 적용하여 비강을 분리하며 볼륨렌더링 기법을 이용하여 분리된 영역을 3차원 공간에서 직관적으로 확인 할 수 있다. 또한 분리된 3차원 비강 모델은 유동흐름 실험을 위하여 3차원 프린터를 통해 실제 모형으로 제작 가능하다. 그리하여 CT dataset(512*512*175)을 가지고 매뉴얼 세그멘테이션에서 5시간 정도 걸리던 작업을 반자동 세그멘테이션 방법을 이용할 경우 최대 3분 이내에 분리 작업을 완료할 수 있으며 수치해석 실험 및 물리 실험에 이용할 수 있다.

Preparation of UV blocking $TiO_2$ Thin Films by Inkjet Printing Method (잉크젯 프린팅을 이용한 자외선 차단용 $TiO_2$ 박막제조)

  • Yun, Cho-Rong;O, Hyo-Jin;Lee, Nam-Hui;Yupeng, Guo;Kim, Seon-Jae
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2007.04a
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    • pp.105-106
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    • 2007
  • 자외선 차단용 $TiO_2$ 박막을 제조하기 위해 수열합성법 중 외부로부터 $N_2$ 가스를 인가하는 방법으로 200 bar의 압력을 유지하여 브룩카이트상의 $TiO_2$ 졸을 합성하였다. 제조된 $TiO_2$ 졸을 잉크젯 프린터로 FTO glass에 프린팅하여 $TiO_2$ 박막을 제조하였고, 합성된 졸과 박막의 특성 평가를 실시하였다. 합성된 졸의 크기는 30nm 이하로 비교적 균질하였으며 잉크젯 프린팅 후에도 입자 형상 및 크기의 변화는 나타나지 않았다. 또한, 코팅 횟수가 증가함에 따라 자외선 영역에서의 흡수도가 증가함을 알 수 있었다.

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3-Dimensional Numerical Modeling for Analysis of Entrained Air Characteristic in Stepped Channel Flow (계단 흐름에서의 공기유입 특성 분석을 위한 3차원 수치모의 연구)

  • Lee, Du Han;Kim, Myounghwan
    • Proceedings of the Korea Water Resources Association Conference
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    • 2016.05a
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    • pp.339-339
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    • 2016
  • 하천의 수질 개선을 위한 방법 중에서도 하천 구조체를 활용하는 방법은 기존의 하천 구조체가 가지는 고유의 기능을 훼손하지 않으면서 하천 수질을 개선할 수 있는 방법으로 점차로 그 영역이 확대되고 있는 추세이다. 이러한 방법의 대부분은 하천 구조체를 통과하는 흐름에 공기유입 기능을 강화하여 물의 용존산소량을 증가시킴으로써 수질의 개선을 유도한다. 따라서 하천 구조체를 통과하는 물에 공기유입을 향상시킬 수 있는 구조체 형상의 개발은 하천의 수질개선에 영향을 줄 수 있는 중요한 연구 주제이다. 본 연구에서는 하천 구조체 중에서도 댐의 여수로와 보에 사용되어지는 계단형 구조물의 흐름에 대해 공기연행 해석이 가능한 난류모형을 적용하여 수치모의를 이용한 검토를 수행하였다. 그 결과 연구에 사용된 모형이 계단형 흐름 구조체의 수리적 특성과 공기유입의 변화를 각각의 형태에 따라 적절히 모의하는 것을 확인 할 수 있었다.

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Trends of Full 3D Human Reconstruction Technology Based on Image (이미지 기반 완전 3D 인간 복원 기술 동향)

  • Song, Dae-Young;Lee, HeeKyung;Seo, Jeongil;Cho, Donghyeon
    • Proceedings of the Korean Society of Broadcast Engineers Conference
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    • 2022.11a
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    • pp.106-108
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    • 2022
  • 이미지 기반 3D 형상 복원에 있어서, 이미지에 보이지 않는 폐색(Occlusion) 영역 부분에 대한 정보가 손실되므로 완전한 복원에 어려움이 있으며, 세밀한 텍스쳐(Texture) 표현이 이루어지지 않고 심한 평활화(Smoothing)나 고립된 노이즈 메쉬(Isolated Noise Mesh) 등 구조적 훼손이 발생한다. 주로 깊은 신경망을 이용하여, 음함수(Implicit Function) 기반 방법은 사전훈련이 완료된 보조 신경망들을 전면부에 배치하거나, Hourglass 등 임베딩(Embedding) 아키텍처를 추가하거나, 또는 표면 법선(Surface Normal)과 같은 환시(Hallucination)를 생성하여 신경망에 입력하기도 한다. 이 논문에서는, 인물의 이미지를 입력받아 색상, 머리카락 및 의상을 포함하는 완전 3D 인간 복원 기술들을 조망해본다.

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A Study on the adequate Aggregate Selection of the Exposed Aggregate PCC Pavements (골재노출 콘크리트포장의 적정 골재 선정에 대한 연구)

  • Kim, Young-Kyu;Chae, Sung-Wook;Lee, Seung-Woo;Yoo, Tae-Seok
    • International Journal of Highway Engineering
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    • v.9 no.4
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    • pp.117-127
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    • 2007
  • The exposed aggregate PCC(EAP) pavements have been successfully used in Europe and Japan as low-noise pavements. Coarse aggregate are exposed on the pavement surface texture of EAP by removing mortar of surface. The pavement surface texture should maintain not only low-noise characteristic but also adequate skid resistance level during the performance period. Skid resistance decreased with wearing and polishing of tire and pavement surface due to the repetition of tire-pavement contact. Since the tires mainly contact the exposed coarse aggregate, the shape and rock type of coarse aggregate significantly influence wearing and polishing of EAP pavements. The test for resistance to abrasion coarse aggregate by use of the Los Angeles machine(KS F 2508) and the method of test for resistance to abrasion coarse aggregate by use of the Accelerated Polishing Machine(ASTM D 3319-90) are generally used to evaluate polishing characteristics of aggregate. In this study, polishing of coarse aggregate of different five rock types were evaluated by KS F 2508(LA abrasion test) and ASTM D 3319-90(PSV method). The results of LA abrasion test and PSV method were contrary to each other. Since LA abrasion test is estimated the quantity of abrasion by the impact of aggregate, it may not be adequate to evaluate the polishing of aggregate by the repetition of tire. In the case of PSV method, the resistance of polishing is estimated the skid resistance variation of polished aggregate after repetition of tire. The PSV method is adequate for the evaluation on polishing of coarse aggregate. From the test results of PSV method, it was founded that rock type, specific gravity, coarse aggregate angularity, flat or elongated particles in coarse aggregate are significant to the resistance characteristic of coarse aggregate.

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Estimation of Buckling and Plastic Behaviour according to the Analysis Model of the Stiffened Plate (보강판의 해석모델에 따른 좌굴 및 소성거동 평가)

  • Ko, Jae-Yong;Oh, Young-Cheol;Park, Joo-Shin
    • Journal of Navigation and Port Research
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    • v.31 no.3 s.119
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    • pp.271-279
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    • 2007
  • Ship structures are basically an assembly of plate elements and estimation load-carrying capacity or the ultimate strength is one of the most important criterion for estimated safety assessment and rational design on the ship structure. Also, Structural elements making up ship plated structures do not work separately against external load. One of the critical collapse events of a ship structure is the occurrence of overall buckling and plastic collapse of deck or bottom structure subjected to longitudinal bending. So, the deck and the bottom plates are reinforced by a number af longitudinal stiffeners to increase their strength and load-carrying capacity. For a rational design avoiding such a sudden collapse, it is very important to know the buckling and plastic behaviour or collapse pattern of the stiffened plate under axial compression. In this present study, to investigate effect af modeling range, the finite element method are used and their results are compared varying the analysis ranges. When making the FEA model, six types of structural modeling are adopted varying the cross section of stiffener. In the present paper, a series of FEM elastoplastic large deflection analyses is performed on a stiffened plate with fiat-bar, angle-bar and tee-bar stiffeners. When the applied axial loading, the influences of cross-sectional geometries on collapse behaviour are discussed. The purpose of the present study is examined to numerically calculate the characteristics of buckling and ultimate strength behavior according to the analysis method of ship's stiffened plate subject to axial loading.

Comparison of characteristics of silver-grid transparent conductive electrodes for display devices according to fabrication method (제조공법에 따른 디스플레이 소자용 silver-grid 투명전극층의 특성 비교)

  • Choi, Byoung Su;Choi, Seok Hwan;Ryu, Jeong Ho;Cho, Hyun
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.27 no.2
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    • pp.75-79
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    • 2017
  • Honeycomb-shaped Ag-grid transparent conductive electrodes (TCEs) were fabricated using two different processes, high density plasma etching and lift-off, and the optical and electrical properties were compared according to the fabrication method. For the fabrication of the Ag-grid TCEs by plasma etching, etch characteristics of the Ag thin film in $10CF_4/5Ar$ inductively coupled plasma (ICP) discharges were studied. The Ag etch rate increased as the power increased at relatively low ICP source power or rf chuck power conditions, and then decreased at higher powers due to either decrease in $Ar^+$ ion energy or $Ar^+$ ion-assisted removal of the reactive F radicals. The Ag-grid TCEs fabricated by the $10CF_4/5Ar$ ICP etching process showed better grid pattern transfer efficiency without any distortion or breakage in the grid pattern and higher optical transmittance values of average 83.3 % (pixel size $30{\mu}m/line$ width $5{\mu}m$) and 71 % (pixel size $26{\mu}m/line$ width $8{\mu}m$) in the visible range of spectrum, respectively. On the other hand, the Ag-grid TCEs fabricated by the lift-off process showed lower sheet resistance values of $2.163{\Omega}/{\square}$ (pixel size $26{\mu}m/line$ width $18{\mu}m$) and $4.932{\Omega}/{\square}$ (pixel size $30{\mu}m/line$ width $5{\mu}m$), respectively.

Analysis of Rock Slope Behavior Utilizing the Maximum Dip Vector of Discontinuity Plane (불연속면의 최대경사벡터를 활용한 사면거동해석)

  • Cho, Taechin
    • Tunnel and Underground Space
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    • v.29 no.5
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    • pp.332-345
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    • 2019
  • Maximum dip vector of individual joint plane, which can be uniquely defined on the hemispherical projection plane, has been established by considering its dip and dip direction. A new stereographic projection method for the rock slope analysis which employs the maximum dip vector can intuitively predict the failure modes of rock slope. Since the maximum dip vector is uniquely projected on the maximum dip point of the great circle, the sliding direction of discontinuity plane can be recognized directly. By utilizing the maximum dip vector of discontinuity both the plane sliding and toppling directions of corresponding blocks can be discerned intuitively. Especially, by allocating the area of high dip maximum dip vector which can form the flanks of sliding block the potentiality for the formation of virtual sliding block has been estimated. Also, the potentiality of forming the triangular-sectioned sliding block has been determined by considering the dip angle of joint plane the dip direction of which is nearly opposite to that of the slope face. Safety factors of the different-shaped blocks of triangular section has been estimated and compared to the safety factor of the most hazardous block of rectangular section. For the wedge analysis the direction of crossline of two intersecting joint planes, which has same attribute of the maximum dip vector, is used so that wedge failures zone can be superimposed on the stereographic projection surface in which plane and toppling failure areas are already lineated. In addition the maximum dip vector zone of wedge top face has been delineated to extract the wedge top face-forming joint planes the orientation of which provides the vital information for the analysis of mechanical behavior of wedge block.

Using Topology Optimization, Light Weight Design of Vehicle Mounted Voltage Converter for Impact Loading (위상 최적화 기법을 이용한 충격하중에 대한 차량 탑재형 전력변환장치의 마운트 경량화 설계)

  • Ko, Dong-Shin;Lee, Hyun-Kyung;Hur, Deog-Jae
    • Journal of the Computational Structural Engineering Institute of Korea
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    • v.31 no.6
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    • pp.353-358
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    • 2018
  • In this study, it is describe to an optimization analysis process for the weight reduction of the voltage converter in the electric vehicle charging systems. The optimization design is a technique that finds the optimal material distribution under a given material quantity constraint by combining the design sensitivity with the material properties and the mathematical optimization. Among the topology optimization, a lightweight design is performed by a solid isotropic material with penalization with simple formula and well-convergence. The lightweight design consists of three steps. As a first step, a finite element model for the basic design of the on-board voltage converter was constructed and static analysis was performed on the load. In the second step, the optimum shape is obtained for the lightweight by performing the topology optimization using the solid isotropic material with penalization applying the stiffness coefficient of the isotropic material to the static analysis result. As a final step, impact analysis was performed by applying a half-sinusoidal pulse shape impact load which satisfies the impact test standard of the vehicle-mounted part with respect to the optimum shape. In the topology optimization, the design domain was defined as the mounting bracket area, and the design technology was finally achieved by optimizing the mounting bracket to achieve a weight reduction of 20% over the basic design.