• Title/Summary/Keyword: Component development

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A Behavior Conformance Checker for Component Interfaces using UML State Machine Diagram (UML 상태기계 다이어그램을 이용한 컴포넌트 인터페이스의 행위 호환성 검증 도구)

  • Kim, Ho-Jun;Lee, Woo-Jin
    • The KIPS Transactions:PartD
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    • v.16D no.1
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    • pp.65-72
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    • 2009
  • Component based development has increasingly become important in the software industry. However, in the current component based development approach with UML, the absence of behavioral description of components brings about a cost problem which causes semantic errors on the testing phase. Accordingly we cannot grasp the usage pattern of component by its provided interfaces which refer to an abstraction of software component. And we cannot guarantee the behavioral conformance of the provided and required interfaces of components. In order to solve these problems, we describe the behaviors of component interfaces by state machine diagram and guarantee their behavior conformance at the modeling phase. We also propose a method to guarantee the behavior conformance of component interfaces with concept of observation equivalence and invocation consistency. And we provide an analyzing tool which checks interface behavior conformance.

CBD process applying for DEFACS (원자력 해체시설 특성관리 시스템을 위한 CBD 프로세스의 적용 방안)

  • Cho, Woonhyoung;Park, Seungkook;Choi, Yundong;Moon, Jeikwon
    • Journal of Software Engineering Society
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    • v.25 no.1
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    • pp.11-18
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    • 2012
  • Characteristic of decommissioning target facility investigate and understand is very important. because radioactive materials occurs in the decommissioning and dismantling, so it is difficult to use a general dismantling method. Decommissioning nuclear facilities, the characteristics of the target of research to predict the amount of decommissioning waste, decommission projects costing is largely utilized. For this purpose, we developed DEFACS(Decommissioning Facility Characterization DB System) that manage characteristic of decommissioning target facility. But nuclear facility decommissioning takes long time. so we inevitably developed system during decommissioning works, it occurs many system changes. For this reason, it is difficult to apply general development process, so we take CBD process that divide CD(Component Development) and CBSD(Component Based Software Development) for handling change of requirement. it make Component of the overall system for changes to minimize changes by strengthening the independence of components and processes due to changes in requirements were to minimize stopping of the process.

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Measuring cohesion of a component (컴포넌트의 응집성 측정)

  • Go, Byeong-Seon;Park, Jae-Nyeon
    • The KIPS Transactions:PartD
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    • v.9D no.4
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    • pp.613-618
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    • 2002
  • The component-based development methodology becomes famous as the new technology for reuse. That technology can help us easily develop a complex and large system by composing reusable components in short period with high-quality and low-cost. The component-based system nay be developed by composing more than one component. So, the quality of component-based system is determined by individual component duality. Therefore, it is necessary to measure individual component quality for the improvement in quality of component-based system. Hence, in this paper, we propose new component metrics for measuring the cohesion as relationship between classes and interfaces or among classes. Those can be applied in the early stage of software development life cycle. So, we can measure the functional cohesion of component which will be developed. Predicting functional independence of a component, we expect to reduce the software developing cost & effort and improve software quality by reusing a component.

Texture Development by Groove Pressing in Aluminum (그루브 압축에 의한 알루미늄의 집합조직)

  • 박종진
    • Proceedings of the Korean Society for Technology of Plasticity Conference
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    • 2000.04a
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    • pp.206-209
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    • 2000
  • Groove pressing which is analogous to groove rolling in the aspect of deformation mode was designed and influence of the uncommon shear deformation on the development of texture and R value was investigated. Texture developed by the groove pressing were measured as well as predicted. It was found out that the main component in the developed texture was {40。, 45。, 0。} in ODF which was regarded as a rotated Bs component and rarely observed in a plain rolling. The maximum R value was predicted to be 3.8 in 45。 direction which might be attributed to the new component.

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Development of the Railroad Geotechnical Information Management System using ActiveX Component (ActiveX 컴포넌트를 이용한 철도 지반정보 관리프로그램의 개발)

  • Hwang Seon Keun;Lee Seong Hyeok;Kim Hyun Ki;Kim Jung Moo
    • Proceedings of the KSR Conference
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    • 2003.10b
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    • pp.436-441
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    • 2003
  • The railroad geotechnical management system using ActiveX component is developed In this study. Component software is realized as a way that can offer good productivity and stability in software production through maximizing the reusability of software. Developed component software is very useful in saving to much time required for the development, increasing the re-usage rates, utilizing the component per function and substantially reducing the expenses for the tests and the error corrections. In addition, since it is easy to replace with other types of components that satisfy the needs of users, we can easily customize the applications.

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Connector Design and Automatic Creation for Components Assembly (컴포넌트 조립을 위한 커넥터 설계 및 자동 생성)

  • Han Jung-Soo;Chae Eun-Ju
    • The Journal of the Korea Contents Association
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    • v.5 no.2
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    • pp.275-281
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    • 2005
  • In view of component based development, system development has replaced by assembling existent software components instead of coding and now component assembly research has progressed. In this paper, we formalized the specification using relationship between components for component assembly. If components are assembled through connector, the assembly is available without method call or modification. Therefore in this paper, we formalized the specification and constraint condition for creation of connector which connects components so that the connector is created automatically through the specification and constraint condition.

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A Fault-Tolerant Scheme Based on Message Passing for Mission-Critical Computers (임무지향 컴퓨터를 위한 메시지패싱 고장감내 기법)

  • Kim, Taehyon;Bae, Jungil;Shin, Jinbeom;Cho, Kilseok
    • Journal of the Korea Institute of Military Science and Technology
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    • v.18 no.6
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    • pp.762-770
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    • 2015
  • Fault tolerance is a crucial design for a mission-critical computer such as engagement control computer that has to maintain its operation for long mission time. In recent years, software fault-tolerant design is becoming important in terms of cost-effectiveness and high-efficiency. In this paper, we propose MPCMCC which is a model-based software component to implement fault tolerance in mission-critical computers. MPCMCC is a fault tolerance design that synchronizes shared data between two computers by using the one-way message-passing scheme which is easy to use and more stable than the shared memory scheme. In addition, MPCMCC can be easily reused for future work by employing the model based development methodology. We verified the functions of the software component and analyzed its performance in the simulation environment by using two mission-critical computers. The results show that MPCMCC is a suitable software component for fault tolerance in mission-critical computers.

Study about Component Identification Method Based On RUP (RUP 기반의 컴포넌트 식별 방법에 관한 연구)

  • Choe, Mi-Suk;Yun, Yong-Ik;Park, Jae-Nyeon
    • The KIPS Transactions:PartD
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    • v.9D no.1
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    • pp.91-102
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    • 2002
  • We need a component-based system to reflect software changes in user's requirements, to implement a system at a rapid speed as well as to efficiently manage the system in a maintenance phase and to easily change software. Moreover, the component-based system has a merit in development cost. However, existing component development methodology for implement of component-based system is inefficient in object identification for component identification. Moreover, the existing component development methodology also fails to provide any method to identify system component. It merely provides procedures and methods to identify business component focused on a whole system domain. In addition, it has another problem that it considerably relies on developer's experiences and intuitions for component identification. Therefore, according to this paper, RUP (Rational Unified Process) is applied from a requirement analysis phase to an object identification phase in order to improve the inefficiency of object identification. In addition, this paper procedures and methods for system component identification, and identifies business components based on the identified system component, rather than on the whole system domain. This paper also provides and applies cohesion metric and coupling metric so as to overcome the problem that component identification depends on developer's intuitions and experiences. Accordingly, the component identification method proposed in this paper, may identify components more effectively based on facility of object identification, functional reusability of components, traceability, and independence of components.

Health Monitoring and Efficient Data Management Method for the Robot Software Components (로봇 소프트웨어 컴포넌트의 실행 모니터링/효율적인 데이터 관리방안)

  • Kim, Jong-Young;Yoon, Hee-Byung
    • Journal of Institute of Control, Robotics and Systems
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    • v.17 no.11
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    • pp.1074-1081
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    • 2011
  • As robotics systems are becoming more complex there is the need to promote component based robot development, where systems can be constructed as the composition and integration of reusable building block. One of the most important challenges facing component based robot development is safeguarding against software component failures and malfunctions. The health monitoring of the robot software is most fundamental factors not only to manage system at runtime but also to analysis information of software component in design phase of the robot application. And also as a lot of monitoring events are occurred during the execution of the robot software components, a simple data treatment and efficient memory management method is required. In this paper, we propose an efficient events monitoring and data management method by modeling robot software component and monitoring factors based on robot software framework. The monitoring factors, such as component execution runtime exception, Input/Output data, execution time, checkpoint-rollback are deduced and the detail monitoring events are defined. Furthermore, we define event record and monitor record pool suitable for robot software components and propose a efficient data management method. To verify the effectiveness and usefulness of the proposed approach, a monitoring module and user interface has been implemented using OPRoS robot software framework. The proposed monitoring module can be used as monitoring tool to analysis the software components in robot design phase and plugged into self-healing system to monitor the system health status at runtime in robot systems.

Practical Connector Patterns for Designing Component Frameworks (컴포넌트 프레임워크 설계를 위한 실용적인 커넥터 패턴)

  • 민현기;김수동
    • Journal of KIISE:Software and Applications
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    • v.31 no.1
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    • pp.43-53
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    • 2004
  • Component-based development(CBD) has acquired a substantial acceptance in both academia and industry as an effective inter-organizational reuse technology. A component framework in product line engineering(PLE) which consists of related components, connectors and their semantics has a greater potential for reusability than components. In frameworks, components are glued with association, dependency and connections. Problems occur like affecting the implementation code of components when they are glued and replaced because the association and dependency relationships between COTS components which are acquired for application development do not match exactly. Especially, a connector may not only connect related components, but also mate partially-matched COTS components fit together. However, little has been studied to date about connectors that can be used practically. In this paper, we present a meta-model for connectors and show how a connector can be designed and implemented in practice. We propose five main patterns of connectors. Proposed major patterns Provide design guidelines for practical and efficient connector configuration based on component framework. And also, applying techniques and applied case studies of the major patterns show greatly increased applicability and reusability of the component without component modification.