• 제목/요약/키워드: 품질전개기능

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Quality Function Deployment(QFD)와 Analytic Hierarchy Process(AHP)를 이용한 유도무기의 시스템 요구도 분석 (System Requirement Analysis of Guided Missile using Quality Function Deployment(QFD) and Analytic Hierarchy Process(AHP))

  • 노경호;황성환;이기승;강동석;김지억
    • 시스템엔지니어링학술지
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    • 제5권1호
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    • pp.67-72
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    • 2009
  • User Requirements are analyzed and quantified by decision making models and system engineering methods to select alternative concepts which satisfy the various requirements. In this study, the design concepts for guided missile are derived using Quality Function Deployment(QFD) and Analytic Hierarchy Process(AHP). The design alternatives that satisfy the user requirements are extracted by QFD and Morphological Matrix, then the best design concept are obtained using AHP and Pugh concept Selection.

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QFD를 활용한 탄약 ILS 효율화 방안 연구 (Design for ILS in Ammunition Development applying QFD Method)

  • 이승목;박영원
    • 시스템엔지니어링학술지
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    • 제5권2호
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    • pp.1-9
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    • 2009
  • This paper proposes an effective method on the DFILS(Design for Integrated Logistics Support) in ammunition development applying QFD(Quality Function Deployment) method. The goal of this research is to define the Design for ILS approach at the start of the ammunition development and to yield a set of reusable requirements. Based on 000mm High-Explosive(Warship ammunition) development work, a QFD software tool, CUPID, was used to analyze and define the field force's requirements. Additionally, a set of reusable requirements are identified and defined for use during the Design for ILS development phase in the next-generation ammunition development process. These set of requirements that consider both the priority and importance of the VOC(Voice of Customer) will contribute to the early phase of the ammunition development to implement the Design for ILS specialty engineering effort.

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통합개념설계 방법론을 이용한 지상 발사장비 개념설계 연구 (Conceptual Design of a Ground Launcher System, Using ICDM - Integrated, Customer Driven, Conceptual Design Method)

  • 이재율;박영원
    • 한국군사과학기술학회지
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    • 제9권3호
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    • pp.56-65
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    • 2006
  • It is well known and widely accepted that the conceptual design is the most influential step in the design process of a product or a system and that about 75% of the life cycle cost is committed as the results of this stage. The purpose of this paper is to present and demonstrate the step of ICDM(Integrated, Customer Driven, Conceptual Design Method) for the development of a ground launcher system, TEL(Transporter, Erector and Launcher). The results of the study show the effectiveness of the method during the conceptual design phase of new complex systems or high-tech products.

품질기능전개를 이용한 고층건물 건설공장 구조체의 개폐식 지붕 시스템 개발 (Development of Sliding Roof System for High-rise Construction Factory Using Quality Function Deployment)

  • 김창원;김백중;조훈희;강경인
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2011년도 추계 학술논문 발표대회
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    • pp.131-132
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    • 2011
  • Non-working days owing to climatic factors have been negatively affected in productivity of construction, such as delays of project completion times, decrease productivity of construction. Especially non-working days of steel erection work is about 58 days, it is influenced deleteriously to estimating uncertain construction duration. To solve this problem, Construction Factory(CF) and sliding roof system installed CF's upper side are developed in korea recently. This study is proposed the design of sliding roof system through assess relation of requirements and technical characteristics using Quality Function Deployment(QFD). The basis data for applying QFD is collected from literature reviews and questionnaires/interviews targeting system developer, experts and researchers.

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퍼지 언어적 평가법과 품질기능전개개념을 이용한 무선호출기의 감성공학적 제품설계 응용사례 (A Case Study of a Customer-Oriented Beeper Design using Fuzzy Linguistic Rating and Quality Function Deployment Concepts)

  • 박민용;최창성
    • 대한인간공학회지
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    • 제17권3호
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    • pp.71-80
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    • 1998
  • This study proposed a method to apply certain fuzzy-related Quality control concepts to design customer-oriented products considering user requirements and information starting with the product development stage. This approach showed how to define the importance level of design elements and how to Quantify complex subjective perception of products using the fuzzy linguistic rating method and quality function deployment concepts. Using this approach, various customer requirements could be interpreted and reflected on the early design phase of a new product. To validate the proposed method, an experiment was conducted for designing the shape of the beeper using 14 subjects and 10 commercial beeper products. Front area, width/length ratio, thickness, curve variance, weight, and display area were selected as design elements of the beeper. The results showed that among design elements, front area and weight are significantly related with the subjective perception of the products. Consequently, this study indicates that customer decision on product selection could be made by quantification of user perception for beeper products.

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DSM과 QFD 분석을 이용한 오토레버 설계 과정의 분석 (A Design Process Analysis with the DSM and the QFD in Automatic Transmission Lever Design)

  • 천준원;박지형
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2003년도 춘계학술대회 논문집
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    • pp.9-12
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    • 2003
  • This paper describes a step-by-step method to minimize design iterations in a process of product design change. In the design process, two components are coupled if a change of a component can require the other components change, and design iterations are generated by the coupling. The design iteration is one of main factors that increase design effort. In this study, three matrices are used to solve the design iteration of automatic transmission lever, Requirement-Engineering matrix, Engineering-Components matrix, and DSM(Design Structure Matrix). Firstly, with the DSM, the product architecture and conceptual design process are proposed from product function analysis. Secondly, with the QFD, the Requirement-Engineering matrix and Engineering-Components matrix present the relationship among customer requirements, engineering issues, and product components. Lastly, the results of the QFD analysis are used in the DSM to solve the component interactions and to provide design

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품질기능전개를 이용한 플라이어의 인간공학적 디자인 (Application of Quality Function Deployment to Ergonomic Design of a Plier)

  • 박희석;이미란
    • 대한인간공학회지
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    • 제26권4호
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    • pp.85-90
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    • 2007
  • This study shows a way to develop ergonomic design of a plier through quality function deployment (QFD) approach. User needs for pliers, as well as the engineering characteristics which have influence on the ergonomic quality of pliers were determined from the interviews and questionnaires with various user groups. This information was entered in the house of quality, and the results show that the handle is the most important quality factor. A new model was proposed in which ergonomic and gender aspects were considered. QFD is considered a suitable method especially for the manufacturing and/or design fields where biomechanical or physiological background is not present.

제품규격 작성방법에 관한 연구 -품질기능전개기법적용중심으로- (A Study for the Establishing Method of Product Standard - Mainly for the Quality Function Development -)

  • 한정오
    • 산업경영시스템학회지
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    • 제15권26호
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    • pp.49-58
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    • 1992
  • It is the greatest task to prescribe accurately and concretely consumer's needs of qualities into the product standards in an enterprise manufacturing and sailing products, From this point of view, Quality Function Deployment system is introduced to inguire into the establishing method of product standards closely Above all, the decision of quality characteristic in the product standards and the estblishing method of product standard are introduced to satisty in this repord. Applying to the product standards in Qulity Function Deployment system, frst it is systematically brought quality function to consumer's needs of qualities into the products. Second the method is concerned with quality function assurance applied in induction of product quality. Also it is available to establish method of product quality level in almost every company.

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품질 기능 전개를 통한 대용 특성값의 결정 방법 (Determination of engineering characteristic values by quality function deployment)

  • 변은신;염봉진
    • 경영과학
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    • 제13권3호
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    • pp.91-104
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    • 1996
  • The basic idea of Quality Function Deployment(QFD) is to deploy the voice of customers into the final product through product planning, part planning, process planning, and manufacturing. In the product planning stage, which is the first stage of product development, customer attributes(CAs) are translated into engineering characteristics(ECs). Then, based on the relationship between CAs and ECs, the target values of ECs are determined. In the previous research, the process of analyzing these relationships is mostly subjective in nature. In this article, we formulate the process of determining the target values of ECs as an optimization model. That is, we first determine the relationship between CAs and ECs as cumulative logit models and construct constraints into which the company strategy as well as the needs of customers can be incorprated. Next, cost functions of ECs are developed, which are summed into an objective function. An algorithm to solve the formulated optimization problem is developed and illustrated with an example.

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품질기능전개와 공리설계를 이용한 고객지향 굴삭기 프론트 초기설계 시스템 (An Initial Design System for the Customer-Oriented Excavator Front with Quality Function Deployment and Axiomatic Design)

  • 전기현;배일주;이수홍
    • 한국CDE학회논문집
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    • 제14권2호
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    • pp.105-114
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    • 2009
  • A design needs various experience and design knowledge through a whole design process. Despite of all efforts and time, it is not easy to introduce a product that meets all customer's needs and expectation in time. To achieve the product goal, designers need a set of sequential process to find appropriate design parameters and ensure customers' needs and requirements. In this research we propose a design methodology for the initial design of an excavator front group with existing QFD(Quality Function Deployment) and Axiomatic Design to satisfy customer's requirements. It turns out that the proposed methodology can support designers more effectively, objectively, and systematically.