• Title/Summary/Keyword: Group Multicast

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The Design of Multicase Key distribution Protocol based CBT(Core Based Tree) (CBT(Core Based Tree)를 기반으로 한 멀티캐스트 키 분배 프로토콜 설계)

  • Kim, Bong-Han;Lee, Jae-Gwang
    • The Transactions of the Korea Information Processing Society
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    • v.7 no.4
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    • pp.1184-1192
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    • 2000
  • Multicast has communication mechanism that is able to transfer voice, video for only the specific user group. As compared to unicast, multicast is more susceptive to attack such as masquerading, malicious replay, denial of service, repudiation and traffic observation, because of the multicast has much more communication links than unicast communication. Multicast-specific security threats can affect not only a group's receivers, but a potentially large proportion of the internet. In this paper, we proposed the multicast security model that is able to secure multi-group communication in CBT(Core Based Tree), which is multicast routing. And designed the multicast key distribution protocol that can offer authentication, user privacy using core (be does as Authentication Server) in the proposed model.

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Client-Based Video-On-Demand System Implementation using Multicast (멀티캐스트를 이용한 사용자 기반의 비디오 주문형 시스템 구현)

  • Hwang, Tae-June;Kim, Back-Hyun;Ik, Soo-Kim
    • Journal of Internet Computing and Services
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    • v.6 no.6
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    • pp.127-137
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    • 2005
  • This paper presents implementation of client-based VOD service using multicast delivery, Conventional system provide server-based system in multicast delivery but implemented system provides on-demand client-based multicast system. The Multicast Agent Scheduler aggregates clients' request and it generate multicast group addresses and port numbers according to requested video items and service request time. Then it transmits immediately multicast address to VOD server and client who request service. And then VOD server transmits requested streams with a multicast group address and the client joins the group automatically. The Multicast Agent Scheduler assigns the same multicast group address when other clients request an identical video within the same scheduling duration. The proposed system can reduce load of server and support many clients at the same time and applies it to WMT(window media technology) of Microsoft.

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(A Multicast Tree Extension Scheme in Mobile IP) (Mobile IP에서 멀티캐스트 트리 확장 방법)

  • Kim, Byung-Soon;Han, Ki-Jun
    • Journal of KIISE:Information Networking
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    • v.30 no.3
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    • pp.307-315
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    • 2003
  • This paper proposes a Multicast Tree Extension (MTE) scheme for multicast in IP-based wireless networks. If a group receiver Joins a multicast group in a visited foreign network, multicast service may be disrupted when the foreign network does not have a multicast router. To avoid disruption, our scheme creates a bi-directional tunnel between the previous foreign agent (FA) and new foreign agent, if a mobile node (MN) moves from a foreign network with multicast capability to another foreign network with non-multicast capability. The MN thus continues to receive the multicast packets through the tunnel from the previous FA. Our scheme can avoid a long latency due to a long tunneling for group membership as well as multicast service disruption, even if the MN enters foreign networks with non-multicast capability. Simulation results show that our scheme offers lower costs for multicast delivery, tunneling and handoff latency than the existing scheme.

An Algorithm of Constructing Multiple Tree for Group Multicast with Bandwidth Constraint (대역폭 제약 그룹 멀티캐스트를 위한 다중 트리 구성 알고리즘)

  • 구봉규;박태근;김치하
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.29 no.3B
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    • pp.305-313
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    • 2004
  • Group multicast refers to the kind of multicast in which every member of a group is allowed to transmit data to the group. The goal of routing algorithms for group multicast is to construct a set of low cost multicast trees including all the group members with QoS (e.g., bandwidth) constraint. There have been several algorithms proposed: source tree and shared tree approaches. However, the latter approach has a low success rate in constructing a shared multicast tree, and the former approach suffers from high control overhead and low scalability as stoup size increases. In this paper, we present a heuristic algorithm which varies the number of multicast trees according to the network load. The simulation results show not only that our algorithm outperforms the shared tree approach in terms of the success rate, but also that it has lower control overhead than the source tree approach while guaranteeing the same success rate.

Effective group key management protocol for secure multicast communication (안전한 멀티캐스트 통신을 위한 효율적인 그룹키 관리 프로토콜)

  • 이현종;김진철;오영환
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.28 no.7C
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    • pp.733-742
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    • 2003
  • Unlikely unicast transmission, there are many elements that threaten security. Thus, key management of creating and distributing group keys to authorized group members is a critical aspect of secure multicast operations. To offer security in multicast environment, the recent researches are related to most group key distribution. In this thesis, we propose a group key management protocol for efficient, scalable, and multicast operation. This proposed protocol architecture can distribute traffic centralized to the key server. since the group key rekeyed by sub-group manager. The detailed simulation compared with other group key management protocol show that the proposed group key management protocol is better for join, leave, and data latency.

A Study on Region-based Secure Multicast in Mobile Ad-hoc Network (Mobile Ad-hoc Network에서 영역기반 보안 멀티캐스트 기법 연구)

  • Yang, Hwanseok
    • Journal of Korea Society of Digital Industry and Information Management
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    • v.12 no.3
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    • pp.75-85
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    • 2016
  • MANET is a network composed only mobile network having limited resources and has dynamic topology characteristics. Therefore, every mobile node acts as a route and delivers data by using multi-hop method. In particular, group communication such as multicast is desperately needed because of characteristics such as battery life of limited wireless bandwidth and mobile nodes. However, the multicast technique can have different efficient of data transmission according to configuring method of a virtual topology by the movement of the nodes and the performance of a multicast can be significantly degraded. In this paper, the region based security multicast technique is proposed in order to increase the efficiency of data transmission by maintaining an optimal path and enhance the security features in data transmission. The group management node that manages the state information of the member nodes after the whole network is separated to area for efficient management of multicast member nodes is used. Member node encrypts using member key for secure data transmission and the security features are strengthened by sending the data after encrypted using group key in group management node. The superiority of the proposed technique in this paper was confirmed through experiments.

An Efficient Multicast Scheme for Hierarchical Mobile IPv6 (계층적 Mobile IPv6를 위한 효율적 멀티캐스트 방안)

  • Kim, Byung-Soon
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.30 no.7A
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    • pp.597-602
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    • 2005
  • This paper proposes an efficient multicast scheme for the hierarchical mobile IPv6(HMIPv6). If a mobility anchor point(MAP) in a new domain does not support multicasting, an entering group member cannot join the multicast group through the new MAP The group member thus keeps receiving multicast packets from its home agent(HA) using Mobile IPv6 (MIPv6). This increases the propagation delay of binding update (BU) messages. However, our scheme enables an entering group member to keep receiving packets from the old multicast MAP. It can also reduce tunneling costs, total delivery costs and handover latency. We simulated the performance of our scheme by comparing it with the seamless multicast handover in a hierarchical mobile Pv6 (M-HMIPv6) using the delivery cost and handover latency factors.

Multicast Support in DiffServ Using Mobile Agents

  • El Hachimi, Mohamed;Abouaissa, Abdelhafid;Lorenz, Pascal
    • ETRI Journal
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    • v.27 no.1
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    • pp.13-21
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    • 2005
  • Many multicast applications, such as video-on-demand and video conferencing, desire quality of service (QoS) support from an underlying network. The differentiated services (DiffServ) approach will bring benefits for theses applications. However, difficulties arise while integrating native IP multicasting with DiffServ, such as multicast group states in the core routers and a heterogeneous QoS requirement within the same multicast group. In addition, a missing per-flow reservation in DiffServ and a dynamic join/leave in the group introduce heavier and uncontrollable traffic in a network. In this paper, we propose a distributed and stateless admission control in the edge routers. We also use a mobile agents-based approach for dynamic resource availability checking. In this approach, mobile agents act in a parallel and distributed fashion and cooperate with each other in order to construct the multicast tree satisfying the QoS requirements.

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Lightweight Multicast Routing Based on Stable Core for MANETs

  • Al-Hemyari, Abdulmalek;Ismail, Mahamod;Hassan, Rosilah;Saeed, Sabri
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • v.8 no.12
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    • pp.4411-4431
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    • 2014
  • Mobile ad hoc networks (MANETs) have recently gained increased interest due to the widespread use of smart mobile devices. Group communication applications, serving for better cooperation between subsets of business members, become more significant in the context of MANETs. Multicast routing mechanisms are very useful communication techniques for such group-oriented applications. This paper deals with multicast routing problems in terms of stability and scalability, using the concept of stable core. We propose LMRSC (Lightweight Multicast Routing Based on Stable Core), a lightweight multicast routing technique for MANETs, in order to avoid periodic flooding of the source messages throughout the network, and to increase the duration of multicast routes. LMRSC establishes and maintains mesh architecture for each multicast group member by dividing the network into several zones, where each zone elects the most stable node as its core. Node residual energy and node velocity are used to calculate the node stability factor. The proposed algorithm is simulated by using NS-2 simulation, and is compared with other multicast routing mechanisms: ODMRP and PUMA. Packet delivery ratio, multicast route lifetime, and control packet overhead are used as performance metrics. These metrics are measured by gradual increase of the node mobility, the number of sources, the group size and the number of groups. The simulation performance results indicate that the proposed algorithm outperforms other mechanisms in terms of routes stability and network density.

FPGA-based Hardware Implementation of Cryptography Algorithm ARIA (암호화 알고리즘 ARIA의 FPGA기반 하드웨어 구현)

  • Kim Young-Soo;Cho Sun-Gu
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.10 no.7
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    • pp.1229-1236
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    • 2006
  • Group oriented multicast service is a prerequisite for the current application system for remote lecture and customer service. IP multicast is used to be generally accepted as an internet standard. IP multicast which is designed to support network based replication model can efficiently use host and network resource, however it has some weak points that it has to support IP multicast in the internet by adding multicast-capable internet infrastructure such as router and is vulnerable to security by using public IP address for group identifier. Therefore we propose the trigger based application level multicast model that can enhance both scalability and security by separating the functions, which send and receive message to solve these problems. Our suggested model is expected to ensure the promotion of quality of service and reliability.