• Title/Summary/Keyword: IP Multicast

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Mobile IP Multicast Protocol Losing Local Broadcast (로컬 브로드캐스트를 이용한 이동 IP 멀티캐스트 프로토콜)

  • 차용주;김화종
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.26 no.12C
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    • pp.208-217
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    • 2001
  • In mobile Internet environment, providing multicast requires much more complex mechanism comparing with the unicast Mobile IP routing protocol. This is because multicast datagrams are sent to a group address that do not belong to a specific network. The IETF Mobile IP suggested two approaches for mobile multicasting, namely remote subscription and hi-directional tunneling. In remote subscription, a mobile node may join a group via a local multicast router on the visited subnet. Therefore remote subscription may cause much datagram loss while reconstructing the delivery tee. In bi-directional tunneling, a mobile node may join a group via a hi-directional tunnel to its home agent. Bi-directional tunneling may suffer from inefficient routing. In this paper, we proposed a new mobile multicasting protocol, Mobile If Multicast using Local Broadcast(MIMLB) which can receive multicast datagrams as fast as possible and optimize routing path for multicast delivery. The MIMLB protocol uses hi-directional tunneling to receive multicast datagrams. And the MIMLB protocol can resolve datagram duplicated problem and optimize routing path by using local broadcast. Simulation results show that MIMLB reduces delivery path length and optimizes multicast routing path when a mobile nod? moves into a foreign network.

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Efficient Multicasting Mechanism for Mobile Computing Environment (효율적인 인터넷 그룹 통신을 위한 RMCP 설계 및 구현)

  • 박주영;정옥조;강신각
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2003.10a
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    • pp.924-927
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    • 2003
  • To support emerging group applications such as network games and Internet live-casting efficiently, IP multicast mechanism is highly needed. But IP multicast still has not been deployed in the current Internet because of its difficulty to manage. RMCP is designed to deliver multicast data in the unicast environment with the help of SM and MA mechanism. In this paper we discuss on RMCP design and test on APAN network.

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A Service Architecture to support IP Multicast Service over UNI 4.0 based ATM Networks (UNI 4.0 기반 ATM 망에서의 IP 멀티캐스트 지원 방안을 위한 서비스 구조)

  • Lee, Mee-Jeong;Jung, Sun;Kim, Ye-kyung
    • Journal of KIISE:Information Networking
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    • v.27 no.3
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    • pp.348-359
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    • 2000
  • Most of the important real time multimedia applications require multipoint transmissions. To support these applications in ATM based Intermet environments, it is important to provide efficient IP multicast transportations over ATM networks. IETF proposed MARS(Multicast Address Resolution Server) as the service architecture to transport connectionless IP multicast flows over connection oriented ATM VCs. MARS assumes UNI3.0/3.1 signalling. Since UNI3.0/3.1 does not provide any means for receivers to request a join for a multicast ATM VC, MARS provides overlay service to relay join request from IP multicast group members to the sources of the multicast group. Later on, ATM Forum standardized UNI4.0 signalling which is provisioned with a new signalling mechanism called LIJ(Leaf Initiated Join). LIJ enables receivers to directly signal the source of an ATM VC to join. In this paper, we propose a new service architecture providing IP multicast flow transportation over ATM networks deploying UNI4.0 signalling. The proposed architecture is named UNI4MARS. It comprises service components same as those of the MARS. The main functionality provided by the UNI4MARS is to provide source information to the receivers so that the receivers may exploit LIJ to join multicast ATM VCs dynamically. The implementation overhead of UNI4MARS and that of MARS are compared by a course of simulations. The simulation results show that the UNI4MARS supports the dynamic IP multicast group changes more efficiently with respect to processing, memory and bandwidth overhead.

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Multi-Multicast Server for Video Conferencing on Information Super Highway (초고속 통신망에서 비디오 컨퍼런싱을 위한 다중 멀티캐스트 서버)

  • An, Sang-Jun;Lee, Seung-Ro;Han, Seon-Yeong
    • The Transactions of the Korea Information Processing Society
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    • v.3 no.7
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    • pp.1858-1867
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    • 1996
  • This paper describes a platform for video conferencing on Information Super Highway. In this paper we de-sign a Multi-Multicast Server(MCS) and the platform. The platform uses Multi-MultiCast Server for multitasking IP Multicast data on IP over ATM. Based on Multicast Address Resolution Server (AMRS) which was proposed in this paper the platform maps from D class IP addresses to ATM addresses. MARS handles a recovery in case of MCS down. This paper also presents a solving mechanism for handling botteneck by using the MCS.

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Overlay Multicast Tree Building Algorithm for MDST and MST in Complete Network (완전 연결된 네트워크에서 MDST와 MST 목적을 갖는 오버레이 멀티캐스트 트리구현 알고리즘)

  • Cho, Myeong-Rai
    • 한국벤처창업학회:학술대회논문집
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    • 2010.08a
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    • pp.71-89
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    • 2010
  • It is strongly believed that multicast will become one of the most promising services on internet for the next generation. Multicast service can be deployed either on network-layer or application-layer. IP multicast (network-layer multicast) is implemented by network nodes (i.e., routers) and avoids multiple copies of the same datagram on the same link. Despite the conceptual simplicity of IP multicast and its obvious benefits, it has not been widely deployed since there remain many unresolved issues. As an alternative to IP multicast, overlay multicast (application-layer multicast) implements the multicast functionality at end hosts rather than routers. This may require more overall bandwidth than IP multicast because duplicate packets travel the same physical links multiple times, but it provides an inexpensive, deployable method of providing point-to-multipoint group communication. In this paper we develop an efficient method applied greedy algorithm for solving two models of overlay multicast tree building problem that is aimed to construct MDST (Minimum Diameter Spanning Tree : minimum cost path from a source node to all its receivers) and MST (Minimum Spanning Tree : minimum total cost spanning all the members). We also simulate and analyze MDST and MST.

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An analysis on the development of a new multicasting method for telecommunication networking (텔레커뮤니케이션 네트워크상 멀티캐스팅 신기술 개발 분석)

  • Cho, Myeong-Rai
    • Asia-Pacific Journal of Business Venturing and Entrepreneurship
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    • v.5 no.3
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    • pp.27-45
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    • 2010
  • It is strongly believed that multicast will become one of the most promising services on internet for the next generation. Multicast service can be deployed either on network-layer or application-layer. IP multicast (network-layer multicast) is implemented by network nodes (i.e., routers) and avoids multiple copies of the same datagram on the same link. Despite the conceptual simplicity of IP multicast and its obvious benefits, it has not been widely deployed since there remain many unresolved issues. As an alternative to IP multicast, overlay multicast (application-layer multicast) implements the multicast functionality at end hosts rather than routers. This may require more overall bandwidth than IP multicast because duplicate packets travel the same physical links multiple times, but it provides an inexpensive, deployable method of providing point-to-multipoint group communication. In this paper we develop an efficient method applied greedy algorithm for solving two models of overlay multicast routing protocol that is aimed to construct MDST (Minimum Diameter Spanning Tree : minimum cost path from a source node to all its receivers) and MST (Minimum Spanning Tree : minimum total cost spanning all the members). We also simulate and analyze MDST and MST.

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Overlay-multicast Live Video Streaming System for Large-scale network (대규모 네트워크에 적합한 오버레이 멀티캐스트 실시간 비디오 스트리밍 시스템 설계)

  • Nam, Yun-seung;Kang, Mi-young;Nam, Ji-seung
    • Proceedings of the Korea Contents Association Conference
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    • 2010.05a
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    • pp.414-416
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    • 2010
  • 현재 인터넷 공급업체(ISP)에서는 IPTV제공을 위하여 IP Multicast 제공이 가능한 망을 구성하여 서비스를 제공하고 있다. 특히, 오픈형 IPTV 서비스를 위해서 기존의 IP Network에서 제공해야 한다. 이는 IP Multicast를 지원하지 않는 기존의 장비들에 대한 문제점을 고려하여야 한다. 오버레이 멀티캐스트(Overlay-Multicast)는 IP Multicast의 단점을 보완하기위한 메커니즘이다. 실시간 비디오 스트리밍 서비스를 위해서는 오버레이 멀티캐스트 트리의 최적화가 요구된다. 트리기반의 오버레이 멀티캐스트에서 각 노드들은 부모 노드와 자식 노드와 QoS/QoE를 보장해 주어야 한다. 본 논문에서는 오버레이 멀티캐스트 트리의 QoS/QoE를 보장하기 위해 Bandwith를 측정하여 Out-degree Level을 조절하는 Dynamic Degree Change 기법을 적용한 실시간 오버레이 멀티캐스트 비디오 스트리밍 시스템을 모델링하였다.

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Preconfigured Multicast Delivery Tree in Mobile IP (Mobile IP에서 기설정된 전달 트리를 이용한 멀티캐스팅 방안)

  • C.B. Chun;C.H. Kang;Lee, J.H.;Kwon, K.H.;Kim, B.S.;Hong, J.P.
    • Proceedings of the Korean Information Science Society Conference
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    • 2002.10e
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    • pp.76-78
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    • 2002
  • Multicasting over mobile IP network becomes more important with the increasing needs of supporting multimedia services in mobile network. The IETF has suggested two approaches which are remote subscription and bidirectional tunneling for supporting mobility management in multicasting over mobile IP. But these protocols have problems - the frequent reconstruction of multicast delivery tree, packet less during handoff, convergence problem, and so on. In this paper, we propose to use preconfiguration of multicast delivery tree when mobile host enters the foreign network. It will decrease the frequency of multicast delivery tree reconstruction, and reduce the packet loss during handoff, Also the multicast delivery tree maintained by Keep Alive messages makes the signaling overload of networks diminished.

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Implementation of UDP-Tunneling Based Multicast Connectivity Solution for Multi-Party Collaborative Environments (다자간 협업 환경을 위한 UDP 터널링 기반의 멀티캐스트 연결성 솔루션의 구현)

  • Kim, Nam-Gon;Kim, Jong-Won
    • Journal of KIISE:Computing Practices and Letters
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    • v.13 no.3
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    • pp.153-164
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    • 2007
  • The Access Grid (AG) provides collaboration environments over the IP multicast networks by enabling efficient exchange of multimedia contents among remote users; however, since lots of current networks are still multicast-disabled, it is not easy to deploy this multicast-based multi-party AG. For this problem, the AG provides multicast bridges as a solution by putting a relay server into the multicast networks. Multicast-disabled clients make UDP connections with this relay server and receive forwarded multicast traffics in unicast UDP packets. This solution is facing several limitations since it requires duplicate forwarding of the same packet for each unicast peer. Thus, in this paper, we propose an alternate solution for the multicast connectivity problem of the AG based on the UMTP (UDP multicast tunneling protocol). By taking advantage of flexibilities of UMTP, the proposed solution is designed to improve the efficiency of network and system utilization, to allow reuse of multicast-based AG applications without modification, and to partially address the NAT/firewall traversal issues. To verify the feasibility of proposed solution, we have implemented a prototype AG connectivity tool based on the UMTP, named as the AG Connector.

Design and Analysis of Mobile-IPv6 Multicasting Algorithm Supporting Smooth Handoff in the All-IP Network (All-IP망에서 Smooth Handoff를 지원하는 Mobile-IP v6 멀티캐스팅 알고리즘의 설계 및 분석)

  • 박병섭
    • The Journal of the Korea Contents Association
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    • v.2 no.3
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    • pp.119-126
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    • 2002
  • The QoS(Quality of Service) guarantee mechanism is one of critical issues in the wireless network. Real-time applications like VoIP(Voice over IP) in All-IP networks need smooth handoffs in order to minimize or eliminate packet loss as a Mobile Host(MH) transitions between network links. In this paper, we design a new multicasting algorithm using DB(Dynamic Buffering) mechanism for Mobile-IPv6. A key feature of the new protocol is the concepts of the DB and MRA(Multicast Routing Agent) to reduce delivery path length of the multicast datagram. Particularly, the number of tunneling and average routing length of datagram are reduced relatively, the multicast traffic load is also decreased.

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