• Title/Summary/Keyword: network interface

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An Extended GDMO for Interworking Different Network Management Protocols (망 관리 프로토콜 연동을 위한 확장된 GDMO)

  • Lim, Mi-Kyoung;Kim, Tae-Soo;Lee, Kwang-Hui
    • The Transactions of the Korea Information Processing Society
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    • v.7 no.1
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    • pp.156-165
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    • 2000
  • This paper proposes an integrated system for interworking different network management protocols. The interworking system between SNMP(Simple Network Management Protocol) and CMIP(Common Management Information Protocol) has been designed. We defined new managed object architecture using MOVI(Managed Object View Interface) concept and implemented an extended GDMO(EGDMO) compiler. An access mechanism for consistency control and atomic action on the sharing resources has been defined. Thus, even if a new management protocol would be introduced, new gateway system need not to be redesigned. It can be achieved with minimum modification of the view interface of managed objects. As a managed object can support various view interfaces, several network management protocols can directly access it. This approach, therefore, provides some benefits. For instance, manager can access managed objects without additional functions and tools. Ti, also, could be achieved interworking between SNMP and CMIP with minimum modification on the view interface of the managed objects defined previously. It is able to interwork more complicated network management protocols and to increase usefulness of SNMP and CMIP.

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Network Management for the GSMP Open Interface in the MPLS (MPLS의 GSMP 개방형 인터페이스를 위한 망 관리)

  • Cha, Yeong-Uk;Kim, Jin-Nyeon;Kim, Chun-Hui
    • The KIPS Transactions:PartC
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    • v.9C no.2
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    • pp.227-234
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    • 2002
  • MPLS which integrates routing of layer 3 and switching of layer 2, enables support for fast forwarding, traffic engineering and virtual private network services. GSMP is open interface protocol between a label switch and a controller, and it provides connection, configuration, event, performance management and synchronization. In the GSMP open interface, the functions of network management can be located either in the controller or in the label switch. To simplify the label switch and enhance the efficiency of resources, we adopt the network management model, in which the SNMP agent is located in the controller and is interworked with the GSMP. We presented the interworking scenrios between the GSMP and the network management of MPLS. We implemented the controller to verify the realization of our adopted network management model, and measured the connection setup delay of the provisioned connection.

A Study for Protocol for Heterogeneous Interface in Sensor Networks within Water Restore Facilities (수질복원시설물 내 센서 네트워크 이기종간 인터페이스용 프로토콜에 관한 연구)

  • Kim, Chan;Shin, Jaekwon;Cha, Jaesang
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.12 no.5
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    • pp.255-260
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    • 2012
  • Currently, the management system of wastewater treatment facility has magnified due to the stringent regulations for the protection of the environment. However, wastewater treatment system is insufficient in wastewater quality monitoring technology in specialized. Above all it aim one-to-one data transmission instead of one-to-n data transmission through sensor and network. And then, it lack compatibility toward communication system between different. Mainly it has observed detecting system of manual system. In this paper, we studied protocol technology about efficient data transmission between sensor and integration interface of water quality detecting interface for automated sensor network integration interface in water restoration facility. Therefore, we proved the possibility of efficient data transmission from communication system of different type through monitoring implementation of sensor network integration interface.

Logical Interface based HNP Change Scheme for Flow Mobility in PMIPv6 Domains (PMIPv6 도메인에서 플로우 이동성 지원을 위한 논리인터페이스 기반 HNP 변환 기법)

  • Hong, Yong-Geun;Han, Ky-Jun;Youn, Joo-Sang
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.16 no.4
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    • pp.677-685
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    • 2012
  • Recently, wireless multi-networking technology has been studied for supporting multi-interface in mobile node. As the related work, in the IETF NetExt WG, the extension of Proxy Mobile IPv6 protocol for supporting flow mobility is actively on going in discussion. PMIPv6 protocol supports simultaneous access through the multi-interface in a mobile node and inter-technology handover between multiple interfaces. However, this protocol can not support flow mobility. Thus, in this paper, when a mobile node connects to PMIPv6 domain through multi-interface, as a way to support flow mobility, the design of logical interface and Home Network Prefix change scheme based on logical interface are proposed, We show that the proposed scheme can perform flow mobility service without end-to-end disconnection in PMIPv6 domain.

Middleware Structure for Module-based Personal Robot (모듈기반 퍼스널 로봇을 위한 미들웨어 구조)

  • Yoon, Gun;Kim, Hyung-Yuk;Kim, Hong-Seok;Park, Hong-Sung
    • Journal of Institute of Control, Robotics and Systems
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    • v.10 no.5
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    • pp.464-474
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    • 2004
  • This paper proposes a middleware structure for the module-based personal robot, which can run on heterogeneous network interfaces and provides users easy interface-method regardless of underlying heterogeneous interfaces and convenient exchange of modules. The proposed middleware is divided into three layers of a streaming layer (SL), a network adaptation layer (NAL) and a network interface layer (NIL). The streaming layer manages application transactions using middleware services and provides user a uniform interfaces to the proposed middleware. The network adaptation layer manages a message-routing and provides naming service and it is a core of the proposed middleware. And the network interfaces layer manages dependent parts of heterogeneous network interfaces such as IEEE1394, USB, Ethernet, and CAN (Control Area Network). This paper implements the proposed middleware structure, where 3 types of interfaces of IEEE 1394, USB and Ethernet are used, and measures response times among those interfaces.

On-chip-network Protocol for Efficient Network Utilization (효율적인 네트워크 사용을 위한 온 칩 네트워크 프로토콜)

  • Lee, Chan-Ho
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.47 no.1
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    • pp.86-93
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    • 2010
  • A system-on-chip (SoC) includes more functions and requires rapidly increased data bandwidth as the development of semiconductor process technology and SoC design methodology. As a result, the data bandwidth of on-chip-networks in SoCs becomes a key factor of the system performance, and the research on the on-chip-network is performed actively. Either AXI or OCP is considered to a substitute of the AHB which has been the most popular on-chip-network. However, they have much increased number of signal wires, which make it difficult to design the interface logic and the network hardware. The compatibility of the protocols with other protocols is not so good. In this paper, we propose a new interface protocol for on-chip-networks to improve the problems mentioned above. The proposed protocol uses less number of signal wires than that of the AHB and considers the compatibility with other interface protocols such as the AXI. According the analysis results, the performance of the proposed protocol per wire is much better than that of the AXI although the absolute performance is slightly inferior.

A Study on Network Interface Scheme of Heterogeneous Systems for SEM's Smart Factory Preliminary Preparation (중소기업 스마트공장 사전준비를 위한 이기종 시스템에 대한 네트워크 인터페이스 방안의 연구)

  • Kim, Jaepyo;Kim, Seungcheon
    • Journal of the Korea Convergence Society
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    • v.11 no.11
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    • pp.55-61
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    • 2020
  • The communication issues expected for SMEs are that 1) IT systems are not easy to connect, 2) data collection and integration by heterogeneous systems are difficult, and 3) various fieldbuses and protocols make interfaces difficult. Usually, SMEs often have automation built before the introduction of smart factories. It is necessary to provide communication technology such as Sensing to meet the heterogeneous system level with the old aged sensors in the automation equipment and communication network of SMEs. We will consider how to improve the network interface before applying the latest network technology at the time of preparation using PI.

Network Construction Method of Oceanographic Research Vessel for an Efficient Investigation (과학적 탐사를 위한 해양조사선 네트워크 구축방안)

  • 박종원;강준선;임용곤;최영철;김시문;김승근
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2003.10a
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    • pp.172-175
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    • 2003
  • This paper deals with the network interface of research and observation instruments in the oceanographic research vessel with an establishment of related database for measured information. The system is implemented to integrated communication network system which allows to effective survey by using real time observation and GUI(Graphic User Interface). The system also consists of the LAN systems and serial interface to link chemical, physical, biological and environmental relations. And, other network service and vessel data service for data communication between vessel and earth station such as INMARSAT-B, WWW service, BBS, E-Mail etc. are needed for integrated communication network system.

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A Structured Method of User Data for User Interface Design in Home Network (홈 네트워크에서 UI 디자인을 위한 사용자 데이터 구조화에 관한 연구)

  • Jung, Ji-Hong;Kim, R.Young-Chul;Pan, Young-Hwan
    • Journal of the Ergonomics Society of Korea
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    • v.26 no.2
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    • pp.61-66
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    • 2007
  • The networked home is connected to the external world using a high speed network. The devices inside the house are connected using a wired and wireless network. Acquiring the user data is an essential step for designing the user interface in user centered design. In networked home, the numbers of use cases are exponentially increased because connected use cases are considered. Because the user data for networked home are too complicated, they are acquired and analyzed by a structured methodology. We surveyed 40 people to acquire the context data home and analyzed by 5W1H (Who, Where, What, When, Why, How). We established a framework for the user data using tasks, user, time, space, objects and environment. The data for home context was structured by our framework. This framework makes simple the home context and is helpful for user interface design in home network.

Performance Analysis of Interworking Model for a Broadband Access Network with VB5.2 Interface (광대역 액세스 망의 VB5.2 인터페이스를 위한 연동 모델의 성능분석)

  • Kim, Choon-Hee;Cha, Young-Wook;Han, Ki-Jun
    • Journal of KIISE:Information Networking
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    • v.27 no.2
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    • pp.237-246
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    • 2000
  • A broadband access network in B-ISDN subscriber network, plays a role of concentration or multiplexing of various subscribers into a service node. For call and connection control functions, DSS2 and B-ISUP signalling protocols are standardized for each of a subscriber side and a network node. B-BCC and B-ANCC protocol were proposed for VB5.2 interface. This interface allows dynamic control of ATM connections at the broadband access network. To establish an end-to-end ATM connection, interworking functions between VB5.2 interface's connection control protocol and the signalling protocol, are performed at the service node. A sequential interworking model and a parallel interworking model were proposed for these interworking functions. The sequential interworking model recommended by ITU-T causes an overall connection setup delay by introducing the access network, because this model proceeds the signalling protocol of network node after the response of VB5.2 interface protocol. On the other hand, the parallel interworking model proceeds the signalling protocol and the VB5.2 interface protocol simultaneously. The simultaneity of the parallel interworking model minimizes the overall connection setup delay. In this paper, we analyze and simulate above two interworking models with B-BCC or B-ANCC protocol in terms of a connection setup delay and completion ratio.

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