• 제목/요약/키워드: Systems Engineering Development Process

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시스템엔지니어링 프로세스에 따른 열차시스템사양서 개발 (The Train System Specification Development Using Systems Engineering Process)

  • 한성호;최성규;이중윤
    • 시스템엔지니어링워크숍
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    • 통권1호
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    • pp.134-139
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    • 2003
  • The mission of tilting train development project is enhancing the speed of transportation of railway passenger using existing infrastructure. The threat of this project is the tilting technology is newly incorporated to this project. To overcome the threat this project incorporate systems engineering technology to development tilting train system. The systems engineering process, which was used in this project, was performed in accordance with systems engineering standard EIA632. This paper shows the systems engineering technology which was used to develop the tilting train system specification. This paper also shows the requirement template which was developed to communicate and synthesis various specialty engineering.

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기존시스템의 개념 및 기본 설계를 위해 최소화된 아키텍처 기반 설계 프로세스 제안 및 고로 시스템 적용 사례 (A Proposal of Architecture Based Minimized Design Process for a Precedented System and the Application Case for a Blast Furnace System)

  • 이중윤;;최인용
    • 시스템엔지니어링학술지
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    • 제14권1호
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    • pp.72-82
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    • 2018
  • Generally speaking, because of complexity of engineering process, the systems engineering may be not easy to understand clearly and not easy to perform also. The status of systems engineering infrastructure of the some Korean industry is not matured yet, i.e., the systems engineering process, method, tool and environment is not implemented consistently within the steel making industry. These difficulties are more severe at the concept and basic design phase than the detail design phase relatively. Korean industry has lots of development project for the precedented systems and usually has matured domain knowledge for the precedented systems. Even though there is a mature domain knowledge of the precedented systems, the development project will lead to failure under the condition of engineering system is not well equipped. For the project success, it is very important to have a proper engineering execution system especially for the concept design and basic phase, which has a high abstraction and a large influence on the whole project. This paper proposes a minimized design process that can be easily applied to the concept and basic design phase of the precedented systems, instead of complex system engineering processes. This paper also proposes the application case of the minimized design process and methods for a Blast Furnace System.

조직 내 시스템엔지니어링 환경 구축방안 (Construction of Systems Engineering Environment in an Enterprise)

  • 이영훈
    • 시스템엔지니어링학술지
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    • 제5권2호
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    • pp.63-69
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    • 2009
  • For the effective and efficient system development, it is provided of complex and diverse disciplines, analysis and design, points of views for decisions making, technical information management, assurance of products, and so on to be integrated and ensured. Systems engineering is conducted through a process and is implemented by tools based on relevant methodologies. Systems engineering environment should be provided to support the systems engineering process, method, and tools used on the project. In this paper, the essential environment in performing works in a organization applying systems engineering on the basis of system life cycle was reviewed. The present states on establishment of the systems engineering in Korea Railroad Research Institute were also examined with some reviews of other cases.

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Development Process of FPGA-based Departure from Nucleate Boiling Ratio Algorithm Using Systems Engineering Approach

  • Hwang, In Sok;Jung, Jae Cheon
    • 시스템엔지니어링학술지
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    • 제14권2호
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    • pp.41-48
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    • 2018
  • This paper describes the systems engineering development process for the Departure from Nucleate Boiling Ratio (DNBR) algorithm using FPGA. Current Core Protection Calculator System (CPCS) requirement and DNBR logic are analyzed in the reverse engineering phase and the new FPGA based DNBR algorithm is designed in the re-engineering phase. FPGA based DNBR algorithm is developed by VHSIC Hardware Description Language (VHDL) in the implementation phase and VHDL DNBR software is verified in the software Verification & Validation phase. Test cases are developed to perform the software module test for VHDL software modules. The APR 1400 simulator is used to collect the inputs data in 100%, 75%, and 50% reactor power condition. Test input signals are injected to the software modules following test case tables and output signals are compared with the expected test value. Minimum DNBR value from developed DNBR algorithm is validated by KEPCO E&C CPCS development facility. This paper summarizes the process to develop the FPGA-based DNBR calculation algorithm using systems engineering approach.

내장형 소프트웨어 개발 프로세스와 기술자료 관리 (Embedded Software Development Process and Systematic Technical Information Management)

  • 정창빈;변재정
    • 한국IT서비스학회지
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    • 제2권1호
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    • pp.135-143
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    • 2003
  • As the functional and nonfunctional requirements of defence systems become more complex and precise, concerning about the systematic development of software embedded into the defence systems has become surged up. In order to develop more reliable and correct software, and to extend the life cycle of the developing software, adoption of some engineering technologies such as development process, methodology, CASE tools and documentation is essentially required. This paper introduce an approach to technical information management in embedded software development process, with an instance, airborne ECM system development project. Particularly, we suggest and explain how to guide the software development according to process and methodology, and how to generate technical documents using CASE tool.

Development of a Web-based MDO Framework for Design and Analysis Integration

  • Park, Chang-Kyu
    • Journal of information and communication convergence engineering
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    • 제8권5호
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    • pp.479-483
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    • 2010
  • The rapid progress of the Internet and network is affecting the engineering design environment as well as business that use Web technologies to enhance their competitive edge. In product development, experts and organization who take part in the design process are often geographically dispersed. Furthermore, different divisions and business often have heterogeneous CAD/CAE systems and methods for expressing product data, and addressing this heterogeneity creates additional costs and increases development time. Managing distributed CAD, CAE and other related systems in an organic and holistic manner from the initial stages of product development is imperative to ensure successful collaboration in the design process. Therefore, this study suggests a Web-based MDO framework to support interfacing and collective use of design and analysis tools.

설계 및 해석정보를 연계한 웹 기반 다분야통합설계 프레임워크 개발 (Development of Web-based MDO Framework for Design and Analysis Integration)

  • 박창규;양영순
    • 대한조선학회논문집
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    • 제45권3호
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    • pp.322-328
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    • 2008
  • Recently, the rapid progress of Internet and Network affects engineering design environment as well as Business fields to utilize Web technologies to enhance it's competitively in the world. In product development, experts and organizations actually taking part in the design process are often geographically dispersed. Furthermore, different divisions and businesses often have heterogeneous CAD/CAE systems and methods for expressing product data, and addressing this heterogeneity creates additional costs and causes longer development periods. To ensure successful collaboration in the design process, it is therefore imperative that distributed CAD, CAE, and other related systems be managed in an organic and integrated manner from the initial stages of product development. Therefore, this study suggests Web-based MDO(Multidisciplinary Design Optimization) framework to support interfacing and the collective use of design and analysis tools.

항공기 개발을 위한 시스템 엔지니어링(SE) 프로세스 적용방안 (A Systems Engineering Process applied to the Aircraft Development)

  • 최석;박중용;안이기
    • 항공우주기술
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    • 제5권2호
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    • pp.53-59
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    • 2006
  • 시스템 엔지니어링은 하나의 학문분야로 인지되어온 이래, 프로젝트의 성공적인 완료를위한 기술적인 선도학문으로서 그 역할을 수행하여 왔다. 또한, 오늘날 치열한 경쟁시장 속에서 프로젝트를 수행하는 많은 조직들은 다양한 프로젝트 이해 당사자의 요구와 기대를 충족시키기 위해 시스템 엔지니어링을 적용해오고 있다. 본 논문은 시스템 엔지니어링 표준의 기본적인 내용과 발전추세 등을 기반으로 항공기 개발 프로젝트에 조정하여 적용한 시스템 엔지니어링 프로세스를 기술하고자 한다.

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한국형 고속열차(HSR 350-x) 개발사업의 시스템엔지니어링 프로세스 적용사례 소개 (Introduction to SE Process Application on the development project of the Korean High-speed Train(HSR 350-x))

  • 박춘수;이태형;최성훈;김기환
    • 시스템엔지니어링학술지
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    • 제4권2호
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    • pp.15-26
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    • 2008
  • The Korean High-speed train was developed during 1996 to 2007. This development project consists of many sub-projects and the train-system includes a lot of sub-systems. In order to promote the project on planned cost and time effectively, we tried to apply systems engineering process during the whole life-cycle. The purpose of this paper is to introduce the systems engineering process applied to this project. Activities carried out in each phase such as pre-design, detailed-design, integration & verification are described.

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실사격 시험 프로세스의 안전성 강화를 위한 MBSE 기반 아키텍처 연구 (Model-Based Architecture Design of the Range Safety Process for Live Fire Test with Enhanced Safety)

  • 예성혁;이재천
    • 대한안전경영과학회지
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    • 제16권2호
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    • pp.43-52
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    • 2014
  • In weapon systems development, live fire tests have been frequently adopted to evaluate the performance of the systems under development. Therefore, it is necessary to ensure safety in the test ranges where the live fire tests can cause serious hazards. During the tests, a special care must be taken to protect the test and evaluation (T&E) personnel and also test assets from potential danger and hazards. Thus, the development and management of the range safety process is quite important in the tests of guided missiles and artillery considering the explosive power of the destruction. Note also that with a newly evolving era of weapon systems such as laser, EMP and non-lethal weapons, the test procedure for such systems is very complex. Therefore, keeping the safety level in the test ranges is getting more difficult due to the increased unpredictability for unknown hazards. The objective of this paper is to study on how to enhance the safety in the test ranges. To do so, an approach is proposed based on model-based systems engineering (MBSE). Specifically, a functional architecture is derived utilizing the MBSE method for the design of the range safety process under the condition that the derived architecture must satisfy both the complex test situation and the safety requirements. The architecture developed in the paper has also been investigated by simulation using a computer-aided systems engineering tool. The systematic application of this study in weapon live tests is expected to reduce unexpected hazards and test design time. Our approach is intended to be a trial to get closer to the recent theme in T&E community, "Testing at the speed of stakeholder's need and rapid requirement for rapid acquisition."