• Title/Summary/Keyword: 3차원 가시화 프로그램

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Development of Earth-Volume Estimation Program using the precise LiDAR DEM (고정밀 LiDAR DEM을 이용한 토공량 계산 프로그램 개발)

  • Lee, Jin-Nyoung;Lee, Done-Ha;Lee, Young-Kyun;Suh, Yong-Cheol
    • Spatial Information Research
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    • v.18 no.5
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    • pp.143-161
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    • 2010
  • In this study, EWS (Earth Work System), the earth-volume estimation program was developed in a way that could enhance efficiency of civil engineering construction through precise earth-volume modeling based on the 3D geospatial information. In this program, it is possible to estimate the precise earth-volume using LiDAR DEM and to establish the earth work plans based on the unit workload of the construction equipments. Also, EWS program can support the 3D visualization of the final results through Google Earth in order to understand intuitively or share the results of earth-volume estimation in the construction project. For verifying the possibility of appling EWS program to construction project, the construction site of Shin-Pochun substation in Shinbuk-myun, Pochon-City, Kunggi Province was selected as a study area and the results of earth-volume and earth work plans estimated from EWS program were compared with those of DAS program. As a result of comparison between EWS and DAS program, the more accurate earth-volume can be estimated by using 3D geospatial information and more reasonable earth work plan can also be established when use the EWS program was developed in this study. Thus, EWS program can enables improvement of productivity by establishing efficient construction plan in the construction site.

A Study on the Interactive Grain Stability Calculation (대화형 Grain Stability Calculation에 관한 연구)

  • Lee, S.S.;Lee, K.O.;Kang, W.S.;Yoon, M.T.;Sung, D.K.;Lee, J.C.
    • Journal of the Society of Naval Architects of Korea
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    • v.34 no.1
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    • pp.102-110
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    • 1997
  • In a shipyard, computer calculation is not frequently used for the grain stability calculation because of large difference between calculation values and real values. Therefore, the necessary calculation process for grain stability is done manually. GUI(Graphical User Interface) is adopted for the convenience of users and interactive data I/O. The hold shape (girder, hold, etc.)needed for calculation are visualized using GLBAX which is a 3 dimensional graphic library. The interface with the ship basic calculation package is also implemented. The aim of this paper is to develop a reliable interactive grain stability calculation program which reduces computational time, and is to computerize the grain stability calculation procedure.

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A Study on the Interactive Preliminary Hull Form Design by Hull Form Transformation Technique (선형변환 기법에 의한 대화식 초기 선형 설계에 관한 연구)

  • Soon-Sub Lee;Kyu-Yeul Lee;Won-Soo Kang
    • Journal of the Society of Naval Architects of Korea
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    • v.31 no.2
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    • pp.7-14
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    • 1994
  • This paper describes the development of the interactive hullform transformation program. This program has many hull transformation functions such as main particular transformation, deadrise generation, section characteristic transformation, local transformation and CB, LCB variation, etc. MBASTRANS adopted the GUI(Graphical User Interface) using the OSF/Motif based on the X-Window system and used X-PLOT and GLBAX which are 2 and 3 dimensional graphic libraries, respectively. The interface module cans generate the information of the hullform for the SIKOB package and the hydrodynamic analysis.

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Indirect Volume Rendering of Hepatobiliary System from CT and MRI Images (CT와 MRI 영상을 이용한 간담도계 간접볼륨렌더링)

  • Jin, Gye-Hwan;Lee, Tae-Soo
    • Journal of the Korean Society of Radiology
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    • v.1 no.2
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    • pp.23-30
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    • 2007
  • This paper presents a method of generating 3-dimensional images by preprocessing 2-dimensional abdominal images obtained using CT (computed tomography) and MRI (magnetic resonance imaging) through segmentation, threshold technique, etc. and apply the method to virtual endoscopy. Three-dimensional images were visualized using indirect volume rendering, which can render at high speed using a general-purpose graphic accelerator used in personal computers. The algorithm used in the rendering is Marching Cubes, which has only a small volume of calculation. In addition, we suggested a method of producing 3-dimensional images in VRML (virtual reality modeling language) running on the Web browser without a workstation or an exclusive program. The number of nodes, the number of triangles and the size of a 3-dimensional image file from CT were 85,367, 174,150 and 10,124, respectively, and those from MRI were 34,029, 67,824 and 3,804, respectively.

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An Analysis and Visualization System for Ship Structural Intensity Using a General Purpose FEA Program (범용 유한요소해석 프로그램을 이용한 선박 진동인텐시티 해석 및 가시화 시스템)

  • Kim, Byung-Hee;Yi, Myung-Seok;Cho, Dae-Seung
    • Journal of the Society of Naval Architects of Korea
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    • v.42 no.5 s.143
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    • pp.487-492
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    • 2005
  • The structural intensity analysis, which calculates vibration energy flow from vibratory velocity and internal force of a structure, can give information on sources' power, dominant transmission path and sink of vibration energy. In this study, we present a system for structural intensity analysis and visualization to apply for anti-vibration design of ship structures. The system calculates structural intensity from the results of forced vibration analysis and visualize the intensity using a general purpose finite element analysis program MSC/Nastran and its pre- and post-processor program. To demonstrate the analysis and visualization capability of the presented system, we show and discuss the results of structural intensity analysis for a cross-stiffened plate and a 70,500 OW crude oil tanker

A CORBA-Based Collaborative Work Supported Medical Image Analysis and Visualization System (코바기반 협업지원 의료영상 분석 및 가시화 시스템)

  • Chun, Jun-Chul;Son, Jae-Gi
    • The KIPS Transactions:PartD
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    • v.10D no.1
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    • pp.109-116
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    • 2003
  • In this paper, a CORBA-based collaborative medical image analysis and visualization system, which provides high accessibility and usability of the system for the users on distributed environment is introduced. The system allows us to manage datasets and manipulates medical images such as segmentation and volume visualization of computed geometry from biomedical images in distributed environments. Using Bayesian classification technique and an active contour model the system provides classification results of medical images or boundary information of specific tissue. Based on such information, the system can create real time 3D volume model from medical imagery. Moreover, the developed system supports collaborative work among multiple users using broadcasting and synchronization mechanisms. Since the system is developed using Java and CORBA, which provide distributed programming, the remote clients can access server objects via method invocation, without knowing where the distributed objects reside or what operating system it executes on.

Development of 3D Visualization Program Connected with Real-time Simulator (실시간 시뮬레이터와 연계된 3차원 가시화 프로그램 개발)

  • Lee Ji-woo;Lee Myeong-soo;Seo In-yong;Hong Jin-huck;Lee Seung-Ho;Suh Jeong-Kwan
    • Proceedings of the Korea Society for Simulation Conference
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    • 2005.05a
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    • pp.89-92
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    • 2005
  • Each 3D visualization program has its own different structure as for the purpose. This paper describes the design and development of an on-line 3D core data visualization program, $RocDis^{TM}$, for the nuclear simulator. It is possible to analyze the inside of the core status including neutron flux, relative power, moderator and fuel temperature in 3D distribution. Some of other essential information, axial flux distribution etc. could also display in 2D graphs. This program would be design, tuning and training for the simulator core model.

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Cuboid가 형성하는 공간의 표상

  • Lee, Jae-Sun;Lee, Cheong-Ju;Kim, Ga-Yeon;Han, Jae-Yeong
    • Communications of Mathematical Education
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    • v.9
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    • pp.317-325
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    • 1999
  • 수식에 의한 컴퓨터 그래픽의 입력과 출력에 관한 프로그램의 개발은 수학의 역동화, 인간화, 보편화에 기여하고 있다. 현실적으로 해결해야할 문제와 수식에 의한 해답이 전부인 현재의 수학을 소프트웨어를 활용하여 그래픽 기능을 첨부하면 움직이는 수학을 가시화 할 수 있다. 컴퓨터 프로그램에 의한 수학의 실현은 수학자들 모두의 염원으로 전세계적으로 활발한 연구가 진행되고 이는 것이다. 수학의 원리와 응용성을 가미한 수학적 그래픽의 발전은 새로운 천년을 장식할 새로운 학문분야로 등장하고 있다. 기초과학의 여러 자료를 분석, 검토하여 그래픽으로 조립하는 작업은 수학적 그래픽의 힘으로 가능하며, 실험과 실습의 양상을 바꾸어 놓고 있다. 건축이나 토목 또는 전기전자 학과의 응용수학은 새로운 소프트웨어의 출현으로 컴퓨터 강의로 전환되고 있으며 수학 그 자체로 전산기능을 강화하는 방향으로 개편되고 있다. 수학 교과 내용의 전산 프로그램화와 컴퓨터 활용 수학 학습은 거부할 수 없는 시대적 요구이다. 이 연구에서는 새로운 천년의 시작은 컴퓨터 프로그램에 의한 완성된 그래픽의 연출이라는 시각에서 수식에 의한 컴퓨터 그래픽의 기본 방향을 제시하고 있다. 2차원 평면이나 3차원 공간에 이와 같은 다변수함수의 역할을 구현함으로써 다양한 그래픽을 영상화할 수 있다. 다중화면의 연출, 다단계화면의 조합, 다단계다중화면의 영상화 등은 수학에 의한 애니메이션의 기초가 된다. 평면도형의 기본동작을 화면에 구체화시키는 Table 기능을 실제로 구현한다. 연습과 실행 그리고 재구성을 반복하여 조형미를 갖춘 수학적 그래픽을 실현한다. 수학의 학습에 적용할 가치가 있는 학습조형물을 개발하고, 프로그램의 단순화에 노력한다. 미분기하학의 여러 공식을 이용하여 숨어 있는 그림을 표출하며 미분방정식의 해가 갖는 그래픽의 묘미를 형상화한다. 수식에 의하여 출력된 그래픽의 여러 효과를 응용수학에 활용할 수 있도록 재조립하는 과정을 걸쳐 완성하는데 이 연구의 참된 의미가 있다.

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Mapping 2D Midship Section into 3D Structural Models based on STEP AP218 (STEP AP218 방법에 따른 중앙단면 2차원 정보의 3차원 구조 모델로 매핑)

  • Ho-Jin Hwang;Soon-Hung Han
    • Journal of the Society of Naval Architects of Korea
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    • v.38 no.4
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    • pp.56-65
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    • 2001
  • The structural model of midship section is within the scope of STEP AP218. It supports to represent the ship structure, but most of shipyards and classification societies exchange the information using 2D drawings at the present. To translate the 2D information into the ship structure model of STEP AP218, we analyze the 2D midship section information of KR-TRAS of Korean Register of shipping, and include the transverse members information with the 3D model. We also define the mapping table and the mapping relationships between two data structures. With this mapping table we develop the translator for the midship section, and visualize the translated ship structure model using a STEP viewer. The ship structure model can be used to exchange information between design departments, and through the lifecycle of design, analysis, and maintenance.

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3-D Graphic Simulation of Robot Kinematics (로봇의 기구학적 3차원 그래픽 시뮬레이션)

  • 조병학
    • Proceedings of the Korea Society for Simulation Conference
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    • 1999.10a
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    • pp.202-209
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    • 1999
  • 한국전력공사 전력연구원 로봇 원격제어기술과 가상현실기술을 접목하는 과정의 일환으로 로봇작업을 3-D 그래픽으로 시뮬레이션하는 연구를 수행하였다. 본 논문에서는 로봇언어를 이용하여 이동경로를 생성하고 이동된 로봇의 위치와 자세정보를 그래픽변수와 연결하여 가시화하는 일련의 과정을 다룬다. 개발된 시뮬레이션 패키지는 실시간으로 로봇의 움직임을 관찰하는 목적 이외에 로봇작업경로의 생성과 로봇설계 등의 엔지니어링 목적으로도 활용할 수 있는 기능을 갖추고 있다. 이 시스템은 사용자의 편이성과 로봇의 신뢰성 및 가격적인 면 등을 고려하여 팬티엄-II급 산업용 PC와 Windows NT로 구성되어 있고, 그래픽 툴로는 Microsoft가 멀티미디어용으로 개발한 DirectX를 활용하였다. DirectX는 다양한 예제 프로그램을 포함하고 있는 Software Design Tool을 제공하므로 소프트웨어 개발시간을 단축시키는 장점을 가지고 있다.

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