• Title/Summary/Keyword: 모델의 가변성

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An approach to analyze commonality and variability of feature based on Ontology in Software Product line Engineering (Software 제품계열공학에서 온톨로지에 기반한 feature의 공통성 및 가변성 분석모델)

  • Kim Jin-Woo;Lee Soon-Bok;Lee Tae-Woong;Baik Doo-Kwon
    • Proceedings of the Korean Information Science Society Conference
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    • 2006.06c
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    • pp.139-141
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    • 2006
  • 제품계열공학에서 feature diagram(FD)은 개발자의 직관이나 도메인 전문가의 경험에 근거하여 작성되어, feature간의 공통성 및 가변성분석 기준이 불명확하며 비정형적인 feature의 공통성 및 가변성 분석으로 인한 stakeholder의 공통된 이해가 부족한 문제점을 내포하고 있다. 따라서, 본 논문에서는 이를 해결하기 위하여 공통된 feature의 이해를 위해 feature 속성리스트에 기반한 메타 feature모델과 feature간의 의미유사성관계를 이용한 온톨로지를 적용한 공통성 및 가변성 분석모델을 제안한다.

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Efficiency Validation for the OVM-based Variability Tracing Method (OVM 중심 가변성 추적 방법에 대한 효용성 검증)

  • Lee, Jihyun;Hwang, Sunmyung
    • Journal of Korea Society of Industrial Information Systems
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    • v.20 no.3
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    • pp.51-60
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    • 2015
  • Traceability targets provision of information to stakeholders required for analyzing impacts among artifacts due to changes. Unlike single product development, in software product line developing the family of products the complexity of maintaining and managing traceability between two life cycles, domain and application engineering is so high. Accordingly, variability traceability management approach centred on orthogonal variability model that manages variability separated from development artifacts has been conceptually proposed, but its efficiency has not verified yet. This paper verifies whether orthogonal variability model based traceability can provide required traceability through an example. As the results, the OVM-based variability tracing method supports well to narrow down artifacts affected by the changes. However, the method does not support tracing the exact artifacts or exact part of an artifact affected by the change.

Ontology-based Approach to Analyzing Commonality and Variability of Features in the Software Product Line Engineering (소프트웨어 제품 계열 공학의 온톨로지 기반 휘처 공동성 및 가변성 분석 기법)

  • Lee, Soon-Bok;Kim, Jin-Woo;Song, Chee-Yang;Kim, Young-Gab;Kwon, Ju-Hum;Lee, Tae-Woong;Kim, Hyun-Seok;Baik, Doo-Kwon
    • Journal of KIISE:Software and Applications
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    • v.34 no.3
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    • pp.196-211
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    • 2007
  • In the Product Line Engineering (PLE), current studies about an analysis of the feature have uncertain and ad-hoc criteria of analysis based on developer’s intuition or domain expert’s heuristic approach and difficulty to extract explicit features from a product in a product line because the stakeholders lack comprehensive understanding of the features in feature modeling. Therefore, this paper proposes a model of the analyzing commonality and variability of the feature based on the Ontology. The proposed model in this paper suggests two approaches in order to solve the problems mentioned above: First, the model explicitly expresses the feature by making an individual feature attribute list based on the meta feature modeling to understand common feature. Second, the model projects an analysis model of commonality and variability using the semantic similarity between features based on the Ontology to the stakeholders. The main contribution of this paper is to improve the reusability of distinguished features on developing products of same line henceforth.

Variability Analysis Approach for Business Process Family Models (비즈니스 프로세스 패밀리 모델을 위한 가변성 분석 방법)

  • Moon, Mi-Kyeong;Yeom, Keun-Hyuk
    • The KIPS Transactions:PartD
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    • v.15D no.5
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    • pp.621-628
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    • 2008
  • Many of today's businesses need IT system's flexibility for on-demand business which can be rapidly adapted to environment changes. Service oriented architecture (SOA) provides the infrastructure which makes business flexibility possible under the on-demand operating environment. Therefore, to satisfy these requirements, new approach for assuring business flexibility and enhancing reuse is needed. In this paper, we propose an approach for developing a business process family model (BPFM) in which the variabilities in business process family can be explicitly represented by using the variability analysis method of software product line. In addition, we describe the supporting tool for this approach. It can model the BPFM and generate automatically BPMs through decision and pruning process from BPFM. By using our approach, the business and its IT system can correspond to business environment changes rapidly and efficiently.

Analysis of the Cognitive Level of Meta-modeling Knowledge Components of Science Gifted Students Through Modeling Practice (모델링 실천을 통한 과학 영재학생들의 메타모델링 지식 구성요소별 인식수준 분석)

  • Kihyang, Kim;Seoung-Hey, Paik
    • Journal of the Korean Chemical Society
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    • v.67 no.1
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    • pp.42-53
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    • 2023
  • The purpose of this study is to obtain basic data for constructing a modeling practice program integrated with meta-modeling knowledge by analyzing the cognition level for each meta-modeling knowledge components through modeling practice in the context of the chemistry discipline content. A chemistry teacher conducted inquiry-based modeling practice including anomalous phenomena for 16 students in the second year of a science gifted school, and in order to analyze the cognition level for each of the three meta-modeling knowledge components such as model variability, model multiplicity, and modeling process, the inquiry notes recorded by the students and observation note recorded by the researcher were used for analysis. The recognition level was classified from 0 to 3 levels. As a result of the analysis, it was found that the cognition level of the modeling process was the highest and the cognition level of the multiplicity of the model was the lowest. The cause of the low recognitive level of model variability is closely related to students' perception of conceptual models as objective facts. The cause of the low cognitive level of model multiplicity has to do with the belief that there can only be one correct model for a given phenomenon. Students elaborated conceptual models using symbolic models such as chemical symbols, but lacked recognition of the importance of data interpretation affecting the entire modeling process. It is necessary to introduce preliminary activities that can explicitly guide the nature of the model, and guide the importance of data interpretation through specific examples. Training to consider and verify the acceptability of the proposed model from a different point of view than mine should be done through a modeling practice program.

A Technique for variability Modeling of UML based Product Line Architecture (UML기반 프로덕트 라인 아키텍처 모델링의 가변성 표현 기법)

  • Lee, Kwan-Woo;Lee, Ji-Won
    • Proceedings of the Korea Information Processing Society Conference
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    • 2011.11a
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    • pp.1372-1375
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    • 2011
  • 프로덕트 라인 공학에서 프로덕트 라인 아키텍처는 가장 중요한 산출물 중에 하나이다. UML (Unified Modeling Language) 2.x 부터는 아키텍처를 모델링하기 위한 유용한 모델링 요소를 제공하고 있다. 이러한 UML을 이용하여 프로덕트 라인 아키텍처를 모델링하기 위해서는 가변성의 표현이 명시적으로 이루어져야 하지만, UML 자체에는 가변성을 표현하기 위한 방법 및 기법을 명시적으로 기술하고 있지 않다. 본 논문에서는 UML에서 제공하는 확장 메커니즘을 이용하여 가변성을 표현하는 방법을 제안한다. 즉, 모델링요소에 태그값(Tagged Value) 및 스테레오타입을 넣어주어 다양한 관점에서의 가변성을 표기하는 방법을 제안한다.

Development of a Tool for Modeling the Variabilities of Business Process (비즈니스 프로세스의 가변성 모델링 지원 도구 개발)

  • Hong, Min-Woo;Moon, Mi-Kyeong;Yeom, Keun-Hyuk
    • Journal of KIISE:Computing Practices and Letters
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    • v.14 no.7
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    • pp.733-737
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    • 2008
  • Business process modeling is to represent the business activities in a graphical notation that enterprises use to achieve their customer's requirements. Nowadays, lots of requirements are changed quickly and variously. Therefore, business process models should provide the means which can prepare for changes by analyzing (pointing) elements of business process that are likely to alter. In this paper, we propose a business process family model (BPFM) which represents the commonalities and the variabilities of a set of business processes. In addition, we propose the process which develops the tools for BPFM based on Eclipse Plug-In Graphical Modeling Framework (GMF). The variabilities of Business Process are modeled by using expanded model elements of UML2.0 activity diagram.

Expressing Variability in Software Product Line Architecture Models: A Comparative Study (소프트웨어 제품라인 아키텍처 모델에서의 가변성 표현 방법 비교 연구)

  • Lee, Hyesun;Cho, Sungbae;Kang, Kyo Chul
    • Journal of Software Engineering Society
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    • v.24 no.3
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    • pp.77-89
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    • 2011
  • Software product line engineering is a software reuse paradigm that helps organizations improve software productivity and quality by developing software products from reusable core assets. For the satisfaction of common and variable requirements among products in the product line, the core assets must be configurable according to the selection of variable features. Therefore, unlike software architecture model of a single product, product line architecture model must embed and express variabilities among the products. Many researches have proposed methods of embedding and expressing variabilities in the product line architecture models, but there are few comparative studies on the proposed methods. In this paper we discuss strong points and weak points of the proposed methods and compare expressiveness of the methods, which helps select a proper method.

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Data Type-Tolerant Component Model: A Method to Process Variability of Externalized Data (데이터 타입 무결성 컴포넌트 모델 : 외부화된 데이터 가변성 처리 기법)

  • Lim, Yoon-Sun;Kim, Myung;Jeong, Seong-Nam;Jeong, An-Mo
    • Journal of KIISE:Software and Applications
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    • v.36 no.5
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    • pp.386-395
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    • 2009
  • Business entities with which most service components interact are kind of cross-cutting concerns in a multi-layered distributed application architecture. When business entities are modified, service components related to them should also be modified, even though they implement common functions of the application framework. This paper proposes what we call DTT (Data Type-Tolerant) component model to process the variability of business entities, or externalized data, which feature modern application architectures. The DTT component model expresses the data variability of product lines at the implementation level by means of SCDTs (Self-Contained Data Types) and variation point interfaces. The model improves the efficiency of application engineering through data type converters which support type conversion between SCDTs and business entities of particular applications. The value of this model lies in that data and functions are coupled locally in each component again by allowing service components to deal with SCDTs only instead of externalized business eutities.

Finite Control Set Model Predictive Control with Variable Sampling Time for Torque Ripple Reduction in SPMSM drive system (표면부착형 영구자석 동기 전동기 구동 시스템에서 토크 리플 저감을 위한 가변 샘플링 시간이 적용된 유한요소 모델예측제어)

  • Lee, Jae-Hyung;Choo, Kyoung-Min;Jeong, Won-Sang;Won, Chung-Yuen
    • Proceedings of the KIPE Conference
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    • 2019.07a
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    • pp.396-397
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    • 2019
  • 본 논문은 유한요소 모델예측제어(FCS-MPC)의 샘플링 시간을 가변하여 표면부착형 영구자석 동기 전동기(SPMSM)의 토크 리플을 개선하고 스위칭 손실을 저감하는 가변 샘플링 시간이 적용된 모델예측제어 기법을 제안한다. 기존 FCS-MPC는 토크 리플을 저감하기 위해 고정 샘플링 시간을 짧게 설정하였다. 고정 샘플링 시간을 짧게 설정함에 따라, 전압벡터의 변경횟수가 증가하여 스위칭 손실이 증가하였다. 본 논문은 이러한 문제점을 해결하기 위해 가변 샘플링 시간이 적용된 FCS-MPC를 통해 토크 리플을 저감하고, 전압벡터의 변경횟수를 감소시켜 스위칭 손실을 저감하였다. 본 논문에서 제안하는 기법은 시뮬레이션을 통해 증명되었다.

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