• Title/Summary/Keyword: Distributed Object Group

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The Mechanism for Reliable Group Communication Based on CORBA in Distributed Environment (분산환경에서 CORBA를 기반으로 한 신뢰성 있는 그룹통신기법)

  • 안계호;이재완
    • Journal of Internet Computing and Services
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    • v.3 no.2
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    • pp.79-85
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    • 2002
  • In open communication architecture, application systems consist of objects distributed in lots of computing nodes. To reduce complexity of development. and management of distributed software, to manage efficiently distributed objects and to provide realtime service, the mechanisms for object group management and communication are needed in distributed environment. In this paper we compose object groups and provide reliable group communication mechanism based on CORBA which can adopt a new service without lots of changes on existing system. Group consist of some subgroups that subgroup manager manages for improving the efficiency of group management and message ordering is kept by using sequencer, Communication method among groups uses multicast based on paint to point communication as well as IP multicast and we provide high performance by using selective retransmission of message through message history, We analyze the performance of the proposed mechanism through simulation in distributed environment.

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A Dynamic Security Service using Access Control Model in Distributed Framework Support for u-Healthcare (u-헬스케어 지원 분산 프레임워크에서 접근 제어 모델을 이용한 동적 보안 서비스)

  • Jeong, Chang-Won;Kim, Dong-Ho;Kim, Myung-Hee;Joo, Su-Chong
    • Journal of Internet Computing and Services
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    • v.8 no.6
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    • pp.29-42
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    • 2007
  • This paper describes a security object designed to support a dynamic security service for application services in u-healthcare computing environments in which domains are used to object groups for specifying security policies, In particular, we focus on security object for distributed framework support for u-healthcare including policy, role for security and operations use to access control. And then, by using the DPD-Tool. we showed the access right grant procedure of objects which are server programs, the developing process of client program. Also, we verified the executablility of security service supporting by distributed framework support for u-healthcare use to the mobile monitoring application developing procedure implemented through DPD-Tools.

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A study of Service Component Based on Active Model Support Healthcare Application Service in u-Environment (u-환경에서 헬스케어 응용 서비스 지원 액티브 모델 기반의 서비스 컴포넌트에 관한 연구)

  • Jeong, Chang-Won;Joo, Su-Chong
    • Journal of Internet Computing and Services
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    • v.11 no.2
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    • pp.31-40
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    • 2010
  • In this paper, we propose a service component based on active model for supporting a variety of u-healthcare application services. It implemented that component as a classification of function for developing healthcare application services. Especially we focus on the adaptive information service in integrated environment using a distributed object technologies of the various healthcare home service based on distributed object group framework. And we shows the service component applying to Healthcare application services such as healthcare home monitoring, mobile monitoring and web based monitoring. Also, we show the performance evaluation results such as response time, system load and network load.

DOVE : A Distributed Object System for Virtual Computing Environment (DOVE : 가상 계산 환경을 위한 분산 객체 시스템)

  • Kim, Hyeong-Do;Woo, Young-Je;Ryu, So-Hyun;Jeong, Chang-Sung
    • Journal of KIISE:Computing Practices and Letters
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    • v.6 no.2
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    • pp.120-134
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    • 2000
  • In this paper we present a Distributed Object oriented Virtual computing Environment, called DOVE which consists of autonomous distributed objects interacting with one another via method invocations based on a distributed object model. DOVE appears to a user logically as a single virtual computer for a set of heterogeneous hosts connected by a network as if objects in remote site reside in one virtual computer. By supporting efficient parallelism, heterogeneity, group communication, single global name service and fault-tolerance, it provides a transparent and easy-to-use programming environment for parallel applications. Efficient parallelism is supported by diverse remote method invocation, multiple method invocation for object group, multi-threaded architecture and synchronization schemes. Heterogeneity is achieved by automatic data arshalling and unmarshalling, and an easy-to-use and transparent programming environment is provided by stub and skeleton objects generated by DOVE IDL compiler, object life control and naming service of object manager. Autonomy of distributed objects, multi-layered architecture and decentralized approaches in hierarchical naming service and object management make DOVE more extensible and scalable. Also,fault tolerance is provided by fault detection in object using a timeout mechanism, and fault notification using asynchronous exception handling methods

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The Distributed Transport Platform for Real-Time Multimedia Stream (실시간 멀티미디어 스트림을 위한 분산 전송 플랫폼)

  • 송병훈;정광수;정형석
    • Journal of KIISE:Information Networking
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    • v.30 no.2
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    • pp.260-269
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    • 2003
  • The traditional distributed object middleware platform is not suitable for the transmission of stream data, because RPC(Remote Procedure Call)-based message transmission have a great overhead. Therefore, the OMG(Object Management Group) proposes the AV(Audio and Video) stream reference model for streaming on the distributed object middleware platform. But, this reference model has not a detail of implementation. Particularly it also has not congestion control scheme for improvement of network efficiency on the real network environment. It is a very important and difficult technical issue to provide the stream transmission platform with advanced congestion control scheme. In this paper, we propose an architecture of a distributed stream transport platform and deal with the design and implementation concept of our proposed platform. Also, we present a mechanism to improve streaming utilization by SRTP(Smart RTP). SRTP is our proposed TCP-Friendly scheme.

Validity Analysis of GDSS Technical Support of Distributed Group Decision-Making Process

  • Hong-Cai, Fu;Ping, Zou;Hao-Wen, Zhang
    • Proceedings of the Korea Society for Industrial Systems Conference
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    • 2007.02a
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    • pp.131-138
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    • 2007
  • Distributed Group Decision Support System (GDSS) is in the stage between exploration and implementation, there is not unified constructing model. As computer software and hardware, network technique develop, especially the development of object-oriented programming, distributed process, and artificial intelligence, this makes it possible the practical and valid implementation of distributed GDSS. With a view of emphasizing and solving process-supporting, this article discusses how to use the key technologies of network, distributed process, artificial intelligence and man-machine mutual interface, to implement more adaptable, more flexible, and more valid GDSS than before.

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u-Healthcare Context Information System Using Mobile Proxy Based on Distributed Object Group Framework (DOGF 기반의 모바일 프락시를 이용한 u-헬스케어 상황정보 시스템)

  • Jeong, Chang-Won;Ahn, Dong-In;Kang, Min-Gyu;Joo, Su-Chong
    • The KIPS Transactions:PartD
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    • v.15D no.3
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    • pp.411-420
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    • 2008
  • This paper implemented the u-Healthcare Context Information System (HCIS) supporting ubiquitous healthcare by using location, health and titrating environment information collected from sensors/devices equipped in home for healthcare home service. The HCIS is based on the Distributed Object Group Framework (DOGF), a management model which can customize distributed resources, and manages various context information, applications and devices as a group in healthcare home environment, as one more logical units. Also, this system provides continuous healthcare multimedia service considering a resident's location using Mobile Proxy, and the healthcare context information through Context Provider to a resident in home. For verifying execution of our system, we implemented the seamless multimedia service based on resident's location and the prescription/advice and schedule notification/alarm service as healthcare applications in home. And we showed the executing results of healthcare home service by using service device existed in the residential space on which the resident is located according to the healthcare scenario.

Intelligent Distributed Platform using Mobile Agent based on Dynamic Group Binding (동적 그룹 바인딩 기반의 모바일 에이전트를 이용한 인텔리전트 분산 플랫폼)

  • Mateo, Romeo Mark A.;Lee, Jae-Wan
    • Journal of Internet Computing and Services
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    • v.8 no.3
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    • pp.131-143
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    • 2007
  • The current trends in information technology and intelligent systems use data mining techniques to discover patterns and extract rules from distributed databases. In distributed environment, the extracted rules from data mining techniques can be used in dynamic replications, adaptive load balancing and other schemes. However, transmission of large data through the system can cause errors and unreliable results. This paper proposes the intelligent distributed platform based on dynamic group binding using mobile agents which addresses the use of intelligence in distributed environment. The proposed grouping service implements classification scheme of objects. Data compressor agent and data miner agent extracts rules and compresses data, respectively, from the service node databases. The proposed algorithm performs preprocessing where it merges the less frequent dataset using neuro-fuzzy classifier before sending the data. Object group classification, data mining the service node database, data compression method, and rule extraction were simulated. Result of experiments in efficient data compression and reliable rule extraction shows that the proposed algorithm has better performance compared to other methods.

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A Study of Mobile Collaboration Environment based on Distributed Object Group Framework and Its application (분산객체그룹프레임워크 기반 모바일 협업 환경 및 적용에 관한 연구)

  • Kim, Dong-Seok;Jeong, Chang-Won;Joo, Su-Chong
    • The KIPS Transactions:PartD
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    • v.13D no.6 s.109
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    • pp.847-856
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    • 2006
  • In this paper, we suggested a mobile collaboration framework for supporting mobile services among mobile devices, and designed and implemented on this environment. The suggested framework has three elements; groups of sensors and mobile devices(Fixed and Moving-typed PDAs) and a home server. We designed interfaces for interactions with each other in collaboration environment with three elements described above. The information collected by sensors can be share and exchanged by mobile devices or a home server in accordance with Push and Pull methods. This framework is based on the distributed object group framework(DOGF) we implemented before. Therefore the DOGF provides functions of object group management, storing information and security services to our mobile collaboration framework via application interfaces defined. The information collected by sensors is arranged according to user's security 'demands. And user profile information is used for checking authority of each service object. Each component for executing functions of mobile devices and a home server is implemented by TMO scheme. And we used the TMOSM for interactions between distributed components. Finally, we showed via GUI the executablity of a given healthcare application scenario on our mobile collaboration framework.

Construction of Mobile Collaboration Environment for Ubiquitous Computing and its Application (유비쿼터스 컴퓨팅을 위한 모바일 협업 환경 구축 및 응용)

  • Jeong, Chang-Won;Shin, Chang-Sun;Joo, Su-Chong
    • Journal of Internet Computing and Services
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    • v.9 no.3
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    • pp.25-41
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    • 2008
  • In this paper, we describes a Compact Distributed Object Group Framework(CDOGF) for mobile collaboration service in ubiquitous computing. CDOGF support network connections of sensors and devices, management of mobile computing devices, and grouping of objects for mobile collaboration service according to the logical area. For this, we defined methods for detail functions and interface. And, we classified into four interactions of that sensors and a application, the CDOGF and a application, between the components of the CDOGF, the CDOGF on a mobile device and the DOGF on a server. We also defined mobile collaboration environment by analyzing existing technologies. In this environment we used the TMO scheme for interaction and the TMOSM for distributed middleware. Finally, we implemented u-hospital application that applied this environment. This application collects environment and health information by PDAs in wards. Also, It provides the information service for patient management task.

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