• 제목/요약/키워드: Topological Model

검색결과 245건 처리시간 0.031초

선체 구조 모델의 위상 정보 재구성을 통한 구조 해석 모델 생성 (Generation of the Structural Analysis Model Through the Reconstruction of the Topological Information of the Hull Structural Model)

  • 노명일;유성진;이규열
    • 대한조선학회논문집
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    • 제43권2호
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    • pp.246-257
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    • 2006
  • In the ship building industry, the generation of a structural analysis model, that is, a finite element model of a hull structure, has been manually performed by a designer and thus has required lots of time as compared with that of a mechanical part, because of many constraints, the complexity, and the huge size of the hull structure. To make this task automatic, a generation method of the structural analysis model is proposed through the reconstruction of the topological information of a hull structural model in this study. The applicability of the proposed method is demonstrated by applying it to the generation of the structural analysis model of a deadweight 300,000ton VLCC(Very Large Crude oil Carrier).

Developing Data Fusion Method for Indoor Space Modeling based on IndoorGML Core Module

  • 이지영;강혜영;김윤지
    • Spatial Information Research
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    • 제22권2호
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    • pp.31-44
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    • 2014
  • 응용프로그램은 그 목적에 따라 최적의 데이터 모델을 활용하며, 이러한 응용프로그램을 위한 3차원 모델링 데이터는 선택된 데이터 모델을 기반으로 생성된다. 이러한 이유로, 동일한 공간의 지형지물을 표현하기 위해 다양한 데이터 셋이 존재한다. 그러한 중복된 데이터 셋은 공간정보 산업의 재정적 측면에서 문제를 가져올 뿐만 아니라, 시스템호환성과 데이터 비교가능성에서도 심각한 문제를 야기한다. 이러한 문제를 극복하기 위하여, 본 연구에서는 항목클래스내의 공간객체들 간의 위상적 관계를 이용하여 TRM (Topological Relation Method)이라고 하는 공간데이터융합 방법을 제안한다. TRM은 응용프로그램 수준에서 구현되는 공간데이터 융합방법으로써, 서로 다른 데이터 모델에 의해 생성된 기하데이터들을 응용시스템에서 어떠한 데이터 변환이나 교환 과정을 거치지 않고, 직접적으로 실내공간 위치기반 서비스에 제공하기 위해 사용된다. 이러한 위상관계는 IndoorGML의 기본 개념으로 정의 및 기술된다. TRM의 개념을 기술한 후, 3D GIS상에서 제안된 데이터 융합방법의 실험적 구현을 보여준다. 마지막으로서 본 연구의 한계와 향후 연구에 대해 정리한다.

Identification of Topological Entities and Naming Mapping for Parametric CAD Model Exchanges

  • Mun, Duh-Wan;Han, Soon-Hung
    • International Journal of CAD/CAM
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    • 제5권1호
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    • pp.69-81
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    • 2005
  • As collaborative design and configuration design gain increasing importance in product development, it becomes essential to exchange parametric CAD models among participants. Parametric CAD models can be represented and exchanged in the form of a macro file or a part file that contains the modeling history of a product. The modeling history of a parametric CAD model contains feature specifications and each feature has selection information that records the name of the referenced topological entities. Translating this selection information requires solving the problems of how to identify the referenced topological entities of a feature (persistent naming problem) and how to convert the selection information into the format of the receiving CAD system (naming mapping problem). The present paper introduces the problem of exchanging parametric CAD models and proposes a solution to naming mapping.

Topological Approach to the Rubber Elasticity of Polymer Networks

  • 손정모;박형숙
    • Bulletin of the Korean Chemical Society
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    • 제10권1호
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    • pp.84-96
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    • 1989
  • Applying the topological theory of rubber elasticity which was suggested by K. Iwata to the newly devised body-centered cubic lattice model, the authors calculated the values of four terms of the free energy to form polymer networks. Finding the projection matrix of the BCL model, and comparing this with the values of the simple cubic lattice (abbreviated to SCL hereafter) model of K. Iwata, the authors obtained the stress versus strain curves and found that the curves are in good agreement with the experimental results of poly(dimethyl siloxane) networks.

기하공간정보(OSI)와 병합정보(SN)을 이용한 고유 명칭 방법 (An OSI and SN Based Persistent Naming Approach for Parametric CAD Model Exchange)

  • 한순흥;문두환
    • 한국CDE학회논문집
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    • 제11권1호
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    • pp.27-40
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    • 2006
  • The exchange of parameterized feature-based CAD models is important for product data sharing among different organizations and automation systems. The role of feature-based modeling is to gonerate the shape of product and capture design intends In a CAD system. A feature is generated by referring to topological entities in a solid. Identifying referenced topological entities of a feature is essential for exchanging feature-based CAD models through a neutral format. If the CAD data contains the modification history in addition to the construction history, a matching mechanism is also required to find the same entity in the new model (post-edit model) corresponding to the entity in the old model (preedit model). This problem is known as the persistent naming problem. There are additional problems arising from the exchange of parameterized feature-based CAD models. Authors have analyzed previous studies with regard to persistent naming and characteristics for the exchange of parameterized feature-based CAD models, and propose a solution to the persistent naming problem. This solution is comprised of two parts: (a) naming of topological entities based on the object spore information (OSI) and secondary name (SN); and (b) name matching under the proposed naming.

디자인 피쳐에 의존하지 않는 솔리드 모델의 수정 (Modification of Solid Models Independent of Design Features)

  • 우윤환
    • 한국CDE학회논문집
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    • 제13권2호
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    • pp.131-138
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    • 2008
  • With the advancements of the Internet and CAD data translation techniques, more CAD models are transferred from a CAD system to another through the network and interoperability is getting a common word in the CAD industry. However, when a CAD model is translated for an incompatible system into a neutral format such as STEP or IGES, its precious feature information is lost. When this feature information is lost, the advantage of feature based modeling is not valid any longer, and modification for the model is purely dependent on geometric and topological manipulations. However, the capabilities of the existing methods to modify these feature-independent models are limited as the modification involves a topological change in the model. To address this issue, we present a volumetric method to modify the solid models in neutral format. First, this method selectively decomposes the solid model to separate the portion of interest called feature volume. Next, the designer modifies the feature volume without concerning a topological change. Finally, the feature volume is united with the original solid model to complete the modification process. The results of test cases are presented to attest the usefulness of the proposed method.

패치별 EGI 분포를 이용한 3D 메쉬 모델 워터마킹 (A Watermarking of 3D Mesh Model using EGI Distributions of Each Patch)

  • 이석환;김태수;김병주;김지홍;권기룡;이건일
    • 한국멀티미디어학회논문지
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    • 제7권1호
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    • pp.80-90
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    • 2004
  • 본 논문에서는 패치별 EGI 분포를 이용한 3D 메쉬 모델(mesh model) 워터마킹 알고리즘을 제안하였다. 제안한 알고리즘에서는 기하학적 변형에 견고하기 위하여 3D 메쉬 모델을 6개 패치로 분할한다. 그리고 위상학적 변형에 견실한 특성을 가지는 EGI 분포를 각 패치별로 구한다. 그리고 동일한 워터마크 비트열을 각 패치의 EGI 분포 중에서 길이가 큰 면체에 투영된 메쉬 법선 벡터들에 각각 삽입한다. 그러므로 제안한 알고리즘은 기하학적 및 위상학적 변형에 견고하며, 특히 워터 마크 추출시 복잡한 재표본화 과정 및 원 모델이 필요 없다. 본 논문에서 제안한 워터마킹 알고리즘의 성능 평가를 위한 모의 실험에서 워터마크가 삽입된 모델의 비가시성 및 다양한 공격에 대한 견고성이 우수함을 확인하였다.

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불확실한 시공간 객체에 관한 위상 관계 알고리즘 (Algorithm for Topological Relationship On an Indeterminate Spatiotemporal Object)

  • 지정희;김대중;류근호
    • 정보처리학회논문지D
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    • 제10D권6호
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    • pp.873-884
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    • 2003
  • 지금까지 명확하게 정의된 경계를 갖는 공간 및 시공간 객체 모델 개발에 관한 많은 연구가 수행되어 왔다. 그러나, 이들 모델은 지리 분석과 이미지 해석에 관한 많은 응용에서 식별되는 불확실한 경계를 갖는 공간 및 시공간 객체에 직접적으로 적용될 수 없다. 따라서, 이 논문에서는 불확실한 공간 및 시공간 객체에 적용할 수 있는 불확실한 시공간 데이터 모델을 제안하고, 이 모델을 기반으로 불확실한 시공간 객체간의 위상 관계에 관한 연산자를 정의하고, 연산 알고리즘을 설계하였다. 제안된 모델은 기존 모델과의 호환성을 위해 개방형 GIS 명세서를 기반으로 하는 시공간 데이터 모델을 확장하여 설계하였다. 불확실한 시공간 객체는 시간에 따라 위치와 모양이 불연속적으로 변하는 객체와 시간에 따라 위치와 모양이 연속적으로 변하는 객체로 정의하였으며, 확장된 9-IM을 사용하여 이들 객체간의 위상 관계를 정의하였다. 제안된 모델은 천연자원 관리시스템, 날씨 정보 관리 시스템, 지리 정보 관리 정보 시스템 등에 효율적으로 적용될 수 있을 것으로 기대된다.

Topological Analysis in Indoor Shopping Mall using Ontology

  • Lee, Kangjae;Kang, Hye-Young;Lee, Jiyeong
    • 한국측량학회지
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    • 제31권6_2호
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    • pp.511-520
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    • 2013
  • Recently, human activities have expanded from outdoor spaces to indoor spaces since a lot of complex buildings were constructed over the world. Especially, visitors in a shopping mall would like to receive specific information of interest regarding various shopping-related activities as well as shopping itself. However, when it comes to providing the information, existing guide services have some drawbacks. Firstly, the existing services cannot provide visitors with the information of other stores simply and promptly on the current location. Secondly, the services have difficulties in representation and share of the shopping-related knowledge, and in providing inferred information. Thus, the purpose of this study is to develop a method that allows topological analysis utilizing ontology technique around the current position in such shopping mall in order to provide shopping-related information. For this, the shopping activity ontology model is designed, and based on the ontology model, inferencing rules are defined in order to extract the information of interest efficiently through semantic queries. Also, a geocoding method in indoor spaces is used regarding the current location, and optimal routing analysis, which is one of topological analysis, is applied with the result from the semantic queries. As a result, an Android application is developed for 3D visualization and user interface.

얇은 두께 솔리드의 효율적인 모델링을 위한 박판 옵셋 알고리즘 개발 (Sheet Offsetting Algorithms for Efficient Solid Modeling for Thin-Walled Parts)

  • 김현수;이상헌
    • 한국CDE학회논문집
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    • 제5권3호
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    • pp.242-254
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    • 2000
  • This paper describes an efficient solid modeling method for thin-walled plastic or sheet metal parts, based on the non-manifold offsetting operations. Since the previous methods for modeling and converting a sheet into a solid have adopted the boundary representations for solid object as their topological framework, it is difficult to represent the exact adjacency relationship between topological entities of a sheet model and a mixture of wireframe and sheet models that can appear in the meantime of modeling procedure, and it is hard to implement topological operations for sheet modeling and transformation of a sheet into a solid. To solve these problems, we introduce a non-manifold B-rep and propose a sheet conversion method based on a non-manifold offset algorithm. Because the non-manifold offset aigorithm based on mathematical definitions results in an offset solid with tubular and spherical thickness-faces we modify it to generate the ruled or planar thickness-faces that are mostly shown in actual plastic or sheet metal parts. In addition, in order to accelerate the Boolean operations used the offset algorithm, we also develope an efficient face-face intersection algorithm using topological adjacency information.

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