• Title/Summary/Keyword: STEP PDM Schema

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STEP 기반 자동차 PDM

  • 오유천
    • Proceedings of the CALSEC Conference
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    • 1997.11a
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    • pp.443-461
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    • 1997
  • ㆍProSTEP, PDES, Inc., and JSTEP announce agreement on PDM Schema ㆍ November 4, 1997 ㆍInteroperable with STEP AP203, AP2l0, AP214, and AP232 ㆍNeutral specification allows for the exchange of the following types - item master data (part identification, approval of part version) - item structure - item classification - item property (mass, costs) - document management (identification, revision… ) - work management (engineering change request, EC order, project) ㆍVendors of PDM systems are asked to join ProSTEP's PDM Round Table and PDES, Inc.'s PDMnet.(omitted)

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CPC Framework for Sharing Product Information Across Enterprises (기업간 제품정보 공유를 위한 협업적 제품거래 프레임워크)

  • Kim, H.;Kim, H.S.;Lee, J.H.;Jung, J.M.;Do, N.C.;Lee, J.Y.
    • Korean Journal of Computational Design and Engineering
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    • v.8 no.4
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    • pp.201-211
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    • 2003
  • Collaborative product commerce (CPC) is a newly emerging technology to support inter-enterprise collaboration through the product life-cycle. From the IT point of view, CPC is software technology to integrate product, process and resources of different enterprises using Web technologies. In this paper, we introduce a CPC framework for integrating product information across enterprises, which being developed as a part of the CPC project by ETRI. The product metadata represented by XML schema, which is compatible with ISO STEP PDM Schema standard, is presented to semantically and schematically integrate distributed product information. The web services technologies are discussed to support the interoperability of application systems related to the product development, such as CAD and PDM, where most of these applications run in a distributed environment. Finally, we implement the frame-work to integrate distributed product information.

Product Information Extraction System Based on STEP in CPC Environment (협업적 제품 거래 환경에서 STEP 기반의 제품정보 추출 시스템)

  • Keem, Joon-Hyoung;Park, Sang-Ho;Kim, Hyun
    • Proceedings of the KSME Conference
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    • 2003.11a
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    • pp.1840-1845
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    • 2003
  • Collaborative product commerce (CPC) supports a collaboration that a global enterprise and customer related to life cycle of product share product information and a collaboration process for the collaboration, and integrating applications. In this paper, we use common data schema in order to solve a interoperability problem about shared product information between enterprises. And we map to common data schema from each other different data format. Therefore we implement CPC Adaptor in order to integrate distributed product information.

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Product Information Extraction System Based on STEP in CPC Environment (협업적 제품 거래 환경에서 STEP 기반의 제품정보 추출 시스템)

  • Park, Sang-Ho;Keem, Joon-Hyoung;Kim, Hyun
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.28 no.5
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    • pp.648-653
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    • 2004
  • Collaborative product commerce (CPC) supports a collaboration that a global enterprise and customer related to lift cycle of product share product information and a collaboration process for the collaboration, and integrating applications. In this paper, we use common data schema in order to solve a interoperability problem about shared product information between enterprises. And we map to common data schema from each other different data format. Therefore we implement CPC Adaptor in order to integrate distributed product information.

Sharing Product Data among Heterogeneous PDM Systems Using OpenPDM (서로 다른 PDM 시스템 간에 OpenPDM을 이용한 제품데이터의 교환)

  • Yang, Jeong-Sam;Han, Soon-Hung;Mun, Du-Hwan
    • Korean Journal of Computational Design and Engineering
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    • v.13 no.2
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    • pp.89-97
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    • 2008
  • Today's manufacturing environment is becoming a distributed manufacturing process in which a unique and specialized technological background is required in specific domains rather than having a single company execute all the manufacturing processes. This phenomenon is especially true in the automotive industry, where the sharing of product data between companies is rampant; however, this kind of interoperability causes many problems. When each company has its own method of managing product data, the sharing of product data in a distributed environment is a major problem. A data translator module or a data mapping module had to be developed for the exchange of data in heterogeneous systems of product data management (PDM); moreover, this type of module must be continually changed and improved due to the fact that PDM systems change for many reasons. In addition, the growth in corporate partnerships deepens the burden of developing and maintaining this module and creates further data exchange problems due to the increasing complexity of the system. This paper introduces a way of exchanging product data among heterogeneous PDM systems through the use of OpenPDM, which is a kind of virtual data warehouse. The implementation of a PDM integrating system is also discussed with respect to the requirement for a logical integration of product data which are physically distributed.

A Method for Engineering Change Analysis by Using OLAP (OLAP를 이용한 설계변경 분석 방법에 관한 연구)

  • Do, Namchul
    • Korean Journal of Computational Design and Engineering
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    • v.19 no.2
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    • pp.103-110
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    • 2014
  • Engineering changes are indispensable engineering and management activities for manufactures to develop competitive products and to maintain consistency of its product data. Analysis of engineering changes provides a core functionality to support decision makings for engineering change management. This study aims to develop a method for analysis of engineering changes based on On-Line Analytical Processing (OLAP), a proven database analysis technology that has been applied to various business areas. This approach automates data processing for engineering change analysis from product databases that follow an international standard for product data management (PDM), and enables analysts to analyze various aspects of engineering changes with its OLAP operations. The study consists of modeling a standard PDM database and a multidimensional data model for engineering change analysis, implementing the standard and multidimensional models with PDM and data cube systems and applying the implemented data cube to core functions of engineering change management, the evaluation and propagation of engineering changes.

STEP AP214 Core Data for Automotive Design and Processes

  • Yong, Jeong-Yoon
    • Proceedings of the CALSEC Conference
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    • 1997.11a
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    • pp.427-441
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    • 1997
  • ㆍEXPRESS에 의한 AP214 Schema 정의 ㆍEXPRESS에 의한 Entity 정의 ㆍEXPRESS에 의한 TYPE, FUNCTION, RULE의 정의 ㆍAIM 축소 정보 모델 (Subset) 구성 ㆍAIM 축소 정보 모델의 예 ㆍ축소 정보 모델에 근거한 소규모 PDM시스템 AP214 개요 정식 명칭 : Core Data for Automotive Design and Processes 파트 번호 : ISO 10303-214 제안시기 : 1992년 STEP 시애틀 회의 (독일에 의하여 제안) 대상 내용 : 자동차의 기획 단계로부터 스타일링, 설계, 실험, 공정 계획, 툴 설계 및 제작, 품질 검사에 이르는 수명 전 주기상에 발생되는 제품 관련 정보 현 상태 : CD(Committee Draft) DIS (Draft International Standard) 표결 진행중(중략)

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An XML-based Digital Mock-Up System for Heterogeneous Multi-CAD Assembly (XML을 이용한 이기종 CAD 조립체 DMU시스템의 설계)

  • Song, In-Ho;Chung, Sung-Chong
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.31 no.6 s.261
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    • pp.635-643
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    • 2007
  • As many engineers and technicians are involved in the design process of large scale and/or complex products, there are a lot of miss matches and interferences due to designers' faults and several kinds of CAD systems. Recently, CAD systems are applied to verify and check the assembly process. Digital Mock-Up(DMU) system, a tool to build a virtual mock-up in the design stage, has been used to prevent the interferences and miss matches during precision design processes. Using the virtual assembly tool, engineers are able to design precision and interference free parts without physical mock-ups. Instead of a single CAD source, several CAD systems are used to design a complex product. Several organizations are involved in the distributed design environment for heterogeneous multi-CAD assembly. XML and the lightweight CAD file are proposed for the multi-CAD assembly. XML data contains hierarchy of the heterogenenous multi-CAD assembly. STEP PDM schema and STEP ISO 10303-28 formations are applied to construct the XML data. The lightweight CAD file produced from various CAD files through ACIS kernel and InterOp not only contains mesn, B-Rep and topological data, but also is used to visualize CAD data and to verify dimensions. Developed system is executed on the desktop computers. It does not require commercial CAD systems to visualize 3D assembly data. Real-time interference and fitness checks, dimensional verification, and design and assembly verification are performed on the developed system. Assembly of heterogeneous models for a car is conducted to verify the effectiveness of the developed DMU system on the Internet.