• 제목/요약/키워드: 3D simulation

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X3D 기만에서의 3차원 Humanoid 모델링과 애니메이션 구현 (Modeling and Animation Implementation of 3D Humanoid base on the X3D)

  • 이성태;오근탁;김이선;이윤배
    • 한국정보통신학회논문지
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    • 제6권7호
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    • pp.1089-1094
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    • 2002
  • 3D Humaniod를 통해 인간은 상상할 수 있는 모든 세계를 넘나들고, 실제 세계에서 실현이 불가능한 것도 가능하게 해주는 대리 역할을 한다. 더욱이 인터넷상에서의 3D 게임이나 가상현실등의 증가로 인해 현실세계에서 존재하는 물체들에 근접하게 모델링하기 위한 3D 캐릭터 애니메이션으로 관심이 쏠리고 있다. 본 논문에서는 3차원 객체를 높은 품질로 표현하기 위해서 새로운 framework을 적용한다. 다양하고 자연스러운 형태의 표현을 위해 Web3D 자료 형태인 VRML과 XML을 이용하여 3차원 Humanoid의 모델링과 애니메이션 기법을 제안하고 Simulation을 통해 타당성을 검증한다.

GPS를 이용한 3D 영상 구현 시뮬레이션 시스템 (3D Video Simulation System Using GPS)

  • 김한길;주상웅;김훈희;정회경
    • 한국정보통신학회논문지
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    • 제18권4호
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    • pp.855-860
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    • 2014
  • 현재 항공기, 자동차 교육훈련용 시뮬레이터는 지상에 설치된 시뮬레이터에 가상의 상황을 구현하여 교육생에게 다양한 교육훈련 내용을 제공하고 교관은 다른 공간에서 교육훈련에 대한 내용을 모니터링하고 교육훈련에 필요한 내용은 바로 지시하여 교육훈련의 효과를 극대화하고 있다. 하지만 교육생이 실제 항공기나 자동차를 탑승하여 훈련을 진행 할 경우 관제센터의 교관은 항공기나, 자동차에 대한 내용을 관제센터에서 모니터링 할 수 없고 교육 종료 후 교육훈련 내용에 대한 평가가 쉽지 않아 교육생에게 양질의 교육이 어렵다. 본 논문에서는 항공기, 자동차에 GPS 정보와 항공기 또는 자동차의 각종 정보를 실시간으로 수집하여 3D 영상 시뮬레이션을 구현하며 화면에 현재 항공기 또는 자동차의 영상을 3차원으로 구현하여 관제센터에서 교육훈련 상황을 실시간으로 모니터링 및 교육훈련에 활용하고 3D 영상 파일을 저장하여 교육훈련 종료 후 교육생과 교관이 교육훈련 내용에 대하여 평가와 분석을 할 수 있는 시뮬레이션 시스템을 개발하고자 한다.

A New Methodology for Advanced Gas Turbine Engine Simulation

  • M.S. Chae;Y.C. Shon;Lee, B.S.;J.S. Eom;Lee, J.H.;Kim, Y.R.;Lee, H.J.
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2004년도 제22회 춘계학술대회논문집
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    • pp.369-375
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    • 2004
  • Gas turbine engine simulation in terms of transient, steady state performance and operational characteristics is complex work at the various engineering functions of aero engine manufacturers. Especially, efficiency of control system design and development in terms of cost, development period and technical relevance implies controlling diverse simulation and identification activities. The previous engine simulation has been accomplished within a limited analysis area such as fan, compressor, combustor, turbine, controller, etc. and this has resulted in improper engine performance and control characteristics because of limited interaction between analysis areas. In this paper, we propose a new simulation methodology for gas turbine engine performance analysis as well as its digital controller to solve difficulties as mentioned above. The novel method has particularities of (ⅰ) resulting in the integrated control simulation using almost every component/module analysis, (ⅱ) providing automated math model generation process of engine itself, various engine subsystems and control compensators/regulators, (ⅲ) presenting total sophisticated output results and easy understandable graphic display for a final user. We call this simulation system GT3GS (Gas Turbine 3D Graphic Simulator). GT3GS was built on both software and hardware technology for total simulation capable of high calculation flexibility as well as interface with real engine controller. All components in the simulator were implemented using COTS (Commercial Off the Shelf) modules. In addition, described here includes GT3GS main features and future works for better gas turbine engine simulation.

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플레어스커트의 가상착용 형상에 관한 연구 -나르시스의 가상착용시스템을 중심으로- (A Study on the 3D Simulating Shapes of the Flared Skirt Using NARCIS-Drape Simulation)

  • 이명희
    • 한국의상디자인학회지
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    • 제8권2호
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    • pp.27-35
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    • 2006
  • We studied the 3D simulating shapes of the flared skirt using NARCIS-Drape Simulation software made in Korea D&M FT. The experimental conditions were made of three types of cuttings (lengthwise, crosswise, 45 bias) and polyester fabrics for flared skirt (light, medium, heavy) and different simulating repetitions (1, 2, ${\cdots}$, 9, 10 times). We accomplished some experimental data on the 3D simulating shapes of the flared skirt made by different conditions. The 3D simulation shapes of the flared skirts were gradually getting stabilized from 5 repetitions. And the length of skirts and the width and depth of hems diminished lower by degrees as the simulating repetitions. It is considered that the simulating repetition for the flared skirt was appropriate in the range of 8 to 10 times. But it was not reasonably showed that the difference in the drape of the flared skirt was made by different cuttings and fabrics.

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Temperature Analysis of Nozzle in a FDM Type 3D Printer Through Computer Simulation and Experiment

  • Park, Jung Hyun;Lyu, Min-Young;Kwon, Soon Yong;Roh, Hyung Jin;Koo, Myung Sool;Cho, Sung Hwan
    • Elastomers and Composites
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    • 제51권4호
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    • pp.301-307
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    • 2016
  • Additive manufacturing (AM), so called 3D Printing is a new manufacturing process and is getting attraction from many industries. There are several methods of 3D printing. Among them fused deposition modeling (FDM) type is most widely used by reason of cheap maintenance, easy operation and variety of polymeric materials. Articles manufactured by 3D printing have weak deposition strength compared with conventionally manufactured products. Deposition strength of FDM type 3D printed article is highly dependent of deposition temperature. Subsequently the nozzle temperature in the FDM type 3D printing is very important and it is controlled by heat source in the 3D printer. Nozzle is connected with heat block and barrel, and heat block contains heat source. Nozzle becomes hot through heat conduction from heat source. Nozzle temperature has been predicted for various thermal boundary conditions by computer simulation and compared with experimental measurement. Nozzle temperature highly depends upon thermal conductivities of heat block and nozzle. Simulation results are good agreement with experiment.

CG산업에서 Simulation 표현의 기술적 활용에 대한 연구 - 불의 표현 활용사례를 중심으로 - (A Study on Simulation Effect Technique of C.G : Focusing on the Fire Simulation Effect)

  • 김용관
    • 만화애니메이션 연구
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    • 통권17호
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    • pp.188-204
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    • 2009
  • 본 연구는 3차원 컴퓨터 그래픽 제작 산업분야에서 최근 가장 경쟁력 있는 분야로 대두되고 있는 연구/개발(R&D) 분야에서 "불의 표현을 중심으로 국내 관련업체들의 기술적 한계를 제시하고 해외 및 국내 애니메이션 제작에서 성공한 기술적 R&D의 과정과 그 결과를 통해 이러한 기술적 한계를 어떻게 극복해야 하는지에 대한 해답을 제시함으로써 과도기를 거쳐 제2의 도약기를 준비하는 국내 컴퓨터 그래픽 애니메이션 산업의 부흥에 도움이 되고자하는 목적으로 연구를 진행하고 있다. 흔히 CT와 IT의 상호 보완적인 특징을 활용한다면 이러한 문제 해결을 넘어 기술적 우위를 확보할 수 있다. 우리는 특히 컴퓨터 그래픽 제작 과정 중 물, 불, 바람, 구름 등의 Simulation System분야와 수십만 캐릭터의 집단행동 또는 단체행동 System 활용도를 중심으로 연구를 진행하였다. 그 중에서 본 논문은 불의 표현에 중점을 두고 실제 작업에 활용된 데이터를 기준으로 그 해답을 제시하였으며 기존의 국내에서 사용하던 전통적 활용방법과 각 연구단체에서 활발하게 진행 중인 프로젝트를 소개하고 본 연구의 적용과정과 결과를 소개함으로써 현업 종사자들에게 향 후 R&D 분야의 나아갈 방향을 제시하고자한다. 창조적인 부재에 너무 집착한 나머지 기술적인 연구 개발부분에의 소홀함이 향 후 미국이나 일본과의 더 큰 기술적 문제로 대두될 수 있음을 명심하고 지금부터라도 과감하고 결단력 있는 기술력의 연구 개발이 필요한 시점이다.

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식립 보조도구를 이용한 3D 치아 임플란트 시술 시뮬레이션 (3D Simulation of Dental Implant Surgery Using Surgical Guide Stents)

  • 박형욱;김명수;박형준
    • 한국CDE학회논문집
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    • 제16권3호
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    • pp.216-226
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    • 2011
  • Surgeon dentists usually rely on their experiential judgments from patients' oral plaster casts and medical images to determine the positional and directional information of implant fixtures and to perform drilling tasks during dental implant surgical operations. This approach, however, may cause some errors and deteriorate the quality of dental implants. Computer-aided methods have been introduced as supportive tools to alleviate the shortcomings of the conventional approach. In this paper, we present an approach of 3D dental implant simulation which can provide the realistic and immersive experience of dental implant information. The dental implant information is primarily composed of several kinds of 3D mesh models obtained as follows. Firstly, we construct 3D mesh models of jawbones, teeth and nerve curves from the patient's dental images using software $Mimics^{TM}$. Secondly, we construct 3D mesh models of gingival regions from the patient's oral impression using a reverse engineering technique. Thirdly, we select suitable types of implant fixtures from fixture database and determine the positions and directions of the fixtures by using the 3D mesh models and the dental images with software $Simplant^{TM}$. Fourthly, from the geometric and/or directional information of the jawbones, the gingival regions, the teeth and the fixtures, we construct the 3D models of surgical guide stents which are crucial to perform the drilling operations with ease and accuracy. In the application phase, the dental implant information is combined with the tangible interface device to accomplish 3D dental implant simulation. The user can see and touch the 3D models related with dental implant surgery. Furthermore, the user can experience drilling paths to make holes where fixtures are implanted. A preliminary user study shows that the presented approach can be used to provide dental students with good educational contents. With future work, we expect that it can be utilized for clinical studies of dental implant surgery.

3D 디지털 기술을 활용한 패션 디자인 개발에 관한 연구 (A Study on the Application of 3D Digital Technology for Fashion Design)

  • 김지언
    • 복식
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    • 제57권2호
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    • pp.45-58
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    • 2007
  • This study shows that clothes are made just the same as the real thing in the virtual space through 3D digital technology. This study is significant to expand the area of fashion design in the virtual space. This study analyzes the practical use of the third dimension computer graphics in the aspect of fashion, and it is proposed the 3D fashion design simulation in the virtual space used on 3D studio max, poser, photoshop program according to fashion design process. The main design concept is "temporary bridge" from rainbow. "Temporary bridge" is a rainbow bridge which connects nature, man and technology, and also the past, present, and future. This study is supposed six fashion design in accordance with three sub-theme under main concept by changing rotor and texture used on 3D simulation. The conclusion are as follows : First fashion design process, which consists of design conceptualization, design definition, and computer design process, composed of body modeling, clothing modeling, texture mapping, rendering by lighting and camera establishing are compared. Second, fashion design process is applied to digital technology. Third, the method of body modeling is both that of direct modeling in 3D Studio Max and that of importing DXF file from poser. And the method of direct clothing modeling in 3D Studio Max are two methods, polygon modeling and nurbs modeling. Polygon modeling is more satisfied than nurbs modeling in the aspect of expression to clothing and round face. Forth, this study applies textures and colors transformed by photoshop on manufactured 3D Clothes. According to this result, fashion designers are able to confirm a customer or client in their design minds viewing 3D simulation by various textures. colors and angles. It is able to advance digital fashion show in the future.

가상 착의 시뮬레이션을 이용한 래글런 소매 패턴 변화에 따른 착의 시 정량적 분석 가능성 모색 (A Study on Based on the Possibility of Quantitative Analysis using Virtual Clothing Simulation according to Raglan Sleeve Pattern Types)

  • 이예진;이병철
    • 한국생활과학회지
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    • 제21권2호
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    • pp.299-314
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    • 2012
  • The purpose of this study was to explore effects of pattern alteration using a virtual clothing simulation approach in combination with 3D analysis software. Three raglan sleeves of different patterns were worn by an avatar using virtual clothing simulation with silk and cotton as the test fabrics. It was observed that the silhouette and hemline shape were affected differently based on raglan sleeve pattern and fabric type. By examining clothing pressure distribution, the cotton fabric designs and pattern shapes provided for a variety of influences on armhole and bust regions as well as the back sleeve area. For representative locations, cross section circumstance, cross section area, and volume were measured by using 3D analysis and the resulting correlation between the 2D and 3D data were investigated. Among different fabrics, there was little difference between the 2D and 3D clothing surface area. However, when using 3D analysis, clothing volume was significantly affected by different fabrics and pattern types. By simultaneously adopting the virtual simulator and 3D analysis, quantitative assessment of virtual clothing simulation was successfully conducted. In light of the results of this study, the resulting methodology is expected to be used as a comprehensive evaluation tool for virtual clothing simulation wear testing.