• 제목/요약/키워드: Geometry Modeling

검색결과 641건 처리시간 0.028초

반응형 가상 URS 서비스를 위한 실내 기하구조 및 환경 센서 모델링 (Modeling of Indoor Geometry and Environment Sensor for Responsive Virtual URS Service)

  • 전경원;기정석;권용무
    • 로봇학회논문지
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    • 제3권2호
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    • pp.112-116
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    • 2008
  • This paper presents URS (Ubiquitous Robotic Space) Modeling and service technique for the robotic security service while bridging between virtual space and physical space. First, this paper introduces a concept of virtual URS and responsive virtual URS. Second, this paper addresses modeling of URS which covers modeling of indoor geometry and environment sensor. Third, this paper describes virtual URS services including interactive virual-physical bridging service.

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건축물 평면 형상 역설계 자동화를 위한 Scan-to-Geometry 맵핑 규칙 정의 (Scan-to-Geometry Mapping Rule Definition for Building Plane Reverse engineering Automation)

  • 강태욱
    • 한국BIM학회 논문집
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    • 제9권2호
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    • pp.21-28
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    • 2019
  • Recently, many scan projects are gradually increasing for maintenance, construction. The scan data contains useful data, which can be generated in the target application from the facility, space. However, modeling the scan data required for the application requires a lot of cost. In example, the converting 3D point cloud obtained from scan data into 3D object is a time-consuming task, and the modeling task is still very manual. This research proposes Scan-to-Geometry Mapping Rule Definition (S2G-MD) which maps point cloud data to geometry for irregular building plane objects. The S2G-MD considers user use case variability. The method to define rules for mapping scan to geometry is proposed. This research supports the reverse engineering semi-automatic process for the building planar geometry from the user perspective.

형상 모델링을 위한 음함수 객체의 설계 및 구현 (The Design and Implementation of Implicit Object Classes for Geometric Modeling System)

  • 박상근;정성엽
    • 한국CDE학회논문집
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    • 제13권3호
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    • pp.187-199
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    • 2008
  • This paper describes a C++ class hierarchy of implicit objects for geometry modeling and processing. This class structure provides a software kernel for integrating many various models and methods found in current implicit modeling areas. The software kernel includes primitive objects playing a role of unit element in creating a complex shape, and operator objects used to construct more complex shape of implicit object formed with the primitive objects and other operators. In this paper, class descriptions of these objects are provided to better understand the details of the algorithm or implementation, and its instance examples to show the capabilities of the object classes for constructive shape geometry. In addition, solid modeling system shown as an application example demonstrates that the proposed implicit object classes allow us to carry out modern solid modeling techniques, which means they have the capabilities to extend to various applications.

New Geometric modeling method: reconstruction of surface using Reverse Engineering techniques

  • Jihan Seo
    • 대한안전경영과학회:학술대회논문집
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    • 대한안전경영과학회 1999년도 추계학술대회
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    • pp.565-574
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    • 1999
  • In reverse engineering area, it is rapidly developing reconstruction of surfaces from scanning or digitizing data, but geometric models of existing objects unavailable many industries. This paper describes new methodology of reverse engineering area, good strategies and important algorithms in reverse engineering area. Furthermore, proposing reconstruction of surface technique is presented. A method find base geometry and blending surface between them. Each based geometry is divided by triangular patch which are compared their normal vector for face grouping. Each group is categorized analytical surface such as a part of the cylinder, the sphere, the cone, and the plane that mean each based geometry surface. And then, each based geometry surface is implemented infinitive surface. Infinitive average surface's intersections are trimmed boundary representation model reconstruction. This method has several benefits such as the time efficiency and automatic functional modeling system in reverse engineering. Especially, it can be applied 3D scanner and 3D copier.

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솔리드 모델 변환과 특징형상인식을 위한 기하 추론 (3D Geometric Reasoning for Solid Model Conversion and Feature Recognition)

  • 한정현
    • 한국컴퓨터그래픽스학회논문지
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    • 제3권2호
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    • pp.77-84
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    • 1997
  • 3차원 물체를 표현하는 솔리드 모델링 기법으로 Constructive Solid Geometry(CSG)와 경계표현 (Boundary Representation: BRep)이 널리 쓰이고 있다. 현대의 솔리드 모델링 시스템들은 대개 이 두 기법을 모두 지원하고 있으며, CSG와 BRep간 상호 변환은 매우 중요한 문제이다. 하지만, BRep에서 CSG로의 변환은 아직 완전히 해결되지 않은 과제이다. 이 논문은 BRep을 CSG의 특수한 형태인 Destructive Solid Geometry(DSG)로 변환하는 3차원 기하 추론 알고리즘을 소개한다. BRep에서 DSG를 만들어내는 알고리즘은 CAD와 CAM을 통합시키는 특정 형상 인식 분야에 직접 응용될 수 있다.

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인체장기의 정밀한 NURBS 곡면 모델링 사례연구 (A Case Study on Precise NURBS Modeling of Human Organs)

  • 김호찬;배용환;서태원;이석희
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2005년도 춘계학술대회 논문집
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    • pp.915-918
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    • 2005
  • Advances in Information Technology and in Biomedicine have created new uses for CAD technology with many novel and important biomedical applications. Such applications can be found, for example, in the design and modeling of orthopedics, medical implants, and tissue modeling in which CAD can be used to describe the morphology, heterogeneity, and organizational structure of tissue and anatomy. CAD has also played an important role in computer-aided tissue engineering for biomimetic design, analysis, simulation and freeform fabrication of tissue scaffolds and substitutes. And all the applications require precision geometry of the organs or bones of each patient. But the geometry information currently used is polygon model with none solid geometry and is so rough that it cannot be utilized for accurate analysis, simulation and fabrication. Therefore a case study is performed to deduce a transformation method to build free form surface from a rough polygon data or medical images currently used in the application. This paper describes the transformation procedure in detail and the considerations for accurate organ modeling are discussed.

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난류 예혼합 화염에서의 프랙탈 차원의 통계적 특성 (Statistical Characteristics of Fractal Dimension in Turbulent Prefixed Flame)

  • 이대훈;권세진
    • 대한기계학회논문집B
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    • 제26권1호
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    • pp.18-26
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    • 2002
  • With the introduction of Fractal notation, various fields of engineering adopted fractal notation to express characteristics of geometry involved and one of the most frequently applied areas was turbulence. With research on turbulence regarding the surface as fractal geometry, attempts to analyze turbulent premised flame as fractal geometry also attracted attention as a tool for modeling, for the flame surface can be viewed as fractal geometry. Experiments focused on disclosure of flame characteristics by measuring fractal parameters were done by researchers. But robust principle or theory can't be extracted. Only reported modeling efforts using fractal dimension is flame speed model by Gouldin. This model gives good predictions of flame speed in unstrained case but not in highly strained flame condition. In this research, approaches regarding fractal dimension of flame as one representative value is pointed out as a reason for the absence of robust model. And as an extort to establish robust modeling, Presents methods treating fractal dimension as statistical variable. From this approach flame characteristics reported by experiments such as Da effect on flame structure can be seen quantitatively and shows possibility of flame modeling using fractal parameters with statistical method. From this result more quantitative model can be derived.

기하와 기하교육과정 변천과 21세기 기하교육의 방향 (The New Directions of Secondary Geometry Curriculum on Historical Perspectives)

  • 장경윤
    • 한국수학사학회지
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    • 제21권4호
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    • pp.105-126
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    • 2008
  • 본 논문은 교양교육과 수학교육에 필수적인 교과로 여겨오던 학교기하가 20세기 초부터 한 세기 동안 학문적 경향과 사회적 변화에 따라 어떻게 변천되어 왔는가를 역사적으로 개관하고 21세기 기하교육과정의 방향을 조망하였다. 21세기 CAD 등 컴퓨터 소프트웨어와 로봇산업 등은 직업과 전문분야에서 기하의 역할과 학교기하의 지식이나 기능도 바꾸고 있다. 응용과 모델링 측면 강화, 추론과 문제해결 영역확대, 디자인과 관련된 요소 강화로 요약되는 21세기 기하교육 방향에서 우리나라 중등학교 기하교육에 시사점을 찾고자 하였다.

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선삭가공으로 제작되는 나사형상의 3차원 파라메터릭 모델 (Parametric Modeling of a Screw Fabricated by Turning)

  • 김호찬;고태조
    • 한국기계가공학회지
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    • 제11권6호
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    • pp.62-68
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    • 2012
  • Geometry of a screw fabricated by a turning process determined by the shape of the tool, feed rate of the tool and rotation speed of the spindle. Therefore, computing the exact geometry of the screw is very important to perform a simulation on machining or an evaluation of the workpice quality. In this paper, a new mathematical geometry model of the 3 dimensional screw is fabricated by turning process introduced for the exact geometry computation. Becasue model has a parametric formulation, it is easy to process for a CAD geometry or apply for a machining simulation. Also, it can be applied to process planning because it gives precise machined geometry on whole the 3 dimensional surface of the screw. This paper introduces a new parametric model of a geometry for screw fabricated by turning process. As an application, a simulation software for the 3 dimensional screw surface is developed and evaluated for several manufacturing parameters.