• Title/Summary/Keyword: Mobile-IPv6 Handoff

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An Improved Handoff and Resource Reservation Scheme Using Triggers in Wireless Network (이동망에서 트리거를 이용한 향상된 핸드오프 메커니즘 및 자원예약 방안)

  • Lee, Don-Su;Min, Sang-Won
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.32 no.10B
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    • pp.630-637
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    • 2007
  • In this paper, we propose an effective handoff mechanism using events at the layer 2 and a tunnel-based mechanism that is performed by sharing information of a mobile node and anticipated-based handoff. Also, we propose a novel anticipated-reservation mechanism using the events triggered at layer 2 to make easy a resource reservation procedure. Comparing with the existing mobile IPv6 handoff mechanism, our proposed handoff mechanism can reduce an amount of handoff latency and traffic volume between access routers where handoff is performed. In the anticipated-reservation mechanism, the amount of signaling traffics between an mobile node and the correspondent nodes can be reduced and then the allocation of resource can be accomplished. We present the performance of our proposed handoff mechanism in the wireless network environment by ns-2 simulation. Although the anticipated-reservation mechanism including a proxy agent is explained without performance evaluation, we can validate the operation of our proposed model only by the procedure of message flow.

Design and Performance Analysis of Bandwidth-Efficient Handoff Scheme in Proxy Mobile IPv6 Networks (프록시 모바일 IPv6 네트워크에서 대역폭에 효율적인 핸드오프 기법의 설계 및 성능 분석)

  • Yoo, Seung-Beak;Jeong, Jongpil
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.14 no.1
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    • pp.219-236
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    • 2014
  • In this paper, we propose a novel Proxy Mobile IPv6 network bandwidth-efficient handoff scheme. MN are classified into slow and fast one. At first MN should be registered in the microcell for bandwidth efficient handoff scheme. microcell is overlapped to handle the overflow session request which is nested. Overflow session request in macrocell requests to go back from the boundary of the microcell to new microcell. If idle session traffic is in a cell, it is requested by the target microcell. Analysis model was developed, an existing session of the session blocking probability and forcing termination probability of the session request have improved considerably. If the total traffic load of the system is not very large, the proposed scheme has the best bandwidth efficiency and provides better quality of service (QoS) to MN without costs of a lot of processing on the system.

Providing Efficient Secured Mobile IPv6 by SAG and Robust Header Compression

  • Wu, Tin-Yu;Chao, Han-Chieh;Lo, Chi-Hsiang
    • Journal of Information Processing Systems
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    • v.5 no.3
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    • pp.117-130
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    • 2009
  • By providing ubiquitous Internet connectivity, wireless networks offer more convenient ways for users to surf the Internet. However, wireless networks encounter more technological challenges than wired networks, such as bandwidth, security problems, and handoff latency. Thus, this paper proposes new technologies to solve these problems. First, a Security Access Gateway (SAG) is proposed to solve the security issue. Originally, mobile terminals were unable to process high security calculations because of their low calculating power. SAG not only offers high calculating power to encrypt the encryption demand of SAG's domain, but also helps mobile terminals to establish a multiple safety tunnel to maintain a secure domain. Second, Robust Header Compression (RoHC) technology is adopted to increase the utilization of bandwidth. Instead of Access Point (AP), Access Gateway (AG) is used to deal with the packet header compression and de-compression from the wireless end. AG's high calculating power is able to reduce the load on AP. In the original architecture, AP has to deal with a large number of demands by header compression/de-compression from mobile terminals. Eventually, wireless networks must offer users "Mobility" and "Roaming". For wireless networks to achieve "Mobility" and "Roaming," we can use Mobile IPv6 (MIPv6) technology. Nevertheless, such technology might cause latency. Furthermore, how the security tunnel and header compression established before the handoff can be used by mobile terminals handoff will be another great challenge. Thus, this paper proposes to solve the problem by using Early Binding Updates (EBU) and Security Access Gateway (SAG) to offer a complete mechanism with low latency, low handoff mechanism calculation, and high security.

Global Mobility Management Scheme for Seamless Mobile Multicasting Service Support in PMIPv6 Networks

  • Song, Myungseok;Cho, Jun-Dong;Jeong, Jong-Pil
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • v.9 no.2
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    • pp.637-658
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    • 2015
  • The development of multimedia applications has followed the development of high-speed networks. By improving the performance of mobile devices, it is possible to provide high-transfer-speed broadband and seamless mobile multicasting services between indoor and outdoor environments. Multicasting services support efficient group communications. However, mobile multicasting services have two constraints: tunnel convergence and handoff latency. In order to solve these problems, many protocols and handoff methods have been studied. In this paper, we propose inter local mobility anchor (inter-LMA) optimized handoff model for mobile multicasting services in proxy mobility IPv6 based (PMIPv6-based) networks. The proposed model removes the tunnel convergence issue and reduces the router processing costs. Further, it the proposed model allows for the execution of fast handoff operations with adaptive transmission mechanisms. In addition, the proposed scheme exhibits low packet delivery costs and handoff latency in comparison with existing schemes and ensures fast handoff when moving the inter-LMA domain.

A Study on Handoff performance improvement scheme for Mobile IPv6 in IEEE 802.11 Wireless Internet (IEEE 802.11에서 Mobile IPv6를 위한 핸드오프 성능 향상방안 연구)

  • Kim, Jong-Hak;Mun, Young-Song
    • Proceedings of the Korea Information Processing Society Conference
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    • 2003.11b
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    • pp.1069-1072
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    • 2003
  • 초고속 인터넷의 보급이 일반화되고, PDA 및 노트북 등의 휴대 이동 컴퓨팅 기기의 사용이 증가하면서, 점차 이동 인터넷 서비스를 요구하는 사용자의 수요가 증가하고 있다. 현재 무선 인터넷 제공을 위한 주요 인프라는 이동 통신망이나 무선랜 망이다. 그러나 무선랜 망 기술의 경우 2 계층에서 이동성을 지원하기 때문에 하부 기술에 대한 의존성으로 인하여 도메인 내에서의 이동서에 대해서만 지원하므로 다른 도메인영역으로의 이동을 지원하는데는 어려움이 있다. 그래서 본 연구에서는 이동 인터넷 사용자들에게 끊김 없는 서비스 제공 및 핸드오프 지연을 줄이기 위하여 IEEE 무선랜 기반 2 계층 핸드오프 기술과 3 계층에서의 이동성을 제공함으로써 하부기술에 독립적인 글로벌 로밍을 지원하는 Mobile IPv6 기술을 제안하고 또한 3 계층에서의 핸드오프 지연 감소 및 핸드오프시에 실시간 서비스 제공을 위한 Mobile IPv6 Fast 핸드오버에 대한 기술의 장, 단점을 연구분석하고 2 계층 및 3 계층 핸드오프 기술의 연동을 통하여 실시간 서비스를 위한 보다 향상된 핸드오프를 수행할 수 있는 방안을 제시한다.

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Fast Handover Provision Mechanism through Reduction of CoA Configuration Time (CoA 설정 시간 단축을 통한 빠른 핸드오버 제공 메카니즘)

  • Choi, Ji-Hyoung;Lee, Dong-Chul;Kim, Dong-Il
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2007.10a
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    • pp.79-82
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    • 2007
  • Recently the diffusion of the advancement of mobile communication technique and mobile terminal increased, The users were demanded seamless services when carrying and moving. It proposed the FMIPv6 (Fast Handoff for Mobile IPv6) from the IETF like this meeting this requirement. The handover procedure of the FMIPv6 causes to defecate with movement detection, new CoA configuration and binding update. But, the delay occurs from each process, when the DAD(Duplicate Address Detection) of the CoA executing, the big delay occurs. This paper proposes a scheme of delay reduction, it omits DAD process and stores in the AR(Access Router) relates in the CoA of the mobile terminal information.

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Fast Handover Provision Mechanism through Reduction of CoA Configuration Time (CoA 설정 시간 단축을 통한 빠른 핸드오버 제공 메카니즘)

  • Jin, Sung-Ho;Choi, Ji-Hyoung;Kim, Dong-Il
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.11 no.11
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    • pp.2027-2031
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    • 2007
  • Recently the diffusion of the advancement of mobile communication technique and mobile terminal increased, The users were demanded seamless services when carrying and moving. It proposed the FMIPv6(Fast Handoff for Mobile IPv6) from the IETF like this meeting this requirement. The handover procedure of the FMIPv6 causes to defecate with movement detection, new CoA configuration and binding update. But, the delay occurs from each process, when the DAD(Duplicate Address Detection) of the CoA executing, the big delay occurs. This paper proposes a scheme of delay reduction, it omits DAD process and stores in the AR(Access Router) relates in the CoA of the mobile terminal information.

A Handoff Scheme between 3GPP GPRS and 3GPP2 Mobile-IP using Mobile IPv6 for "All-IP Network" (All-IP 망을 위한 Mobile IPv6 를 사용한 3GPP GPRS 와 3GPP2 Mobile-IP 간의 핸드오프 기법)

  • Shim, Seung-Seop;Mun, Young-Song
    • Proceedings of the Korea Information Processing Society Conference
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    • 2001.04b
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    • pp.639-642
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    • 2001
  • 차세대 이동통신망은 "ALL-IP Network" 이라고 불리는 차세대 이동 통신망을 위한 새로운 전송기술과 새로운 망으로 기존 망이 진화하게 될 것이다. 네트웍 계층에서 볼 때 기본적으로 이동단말기에서 IP 패킷을 생성하고 무선/유선 통신망을 통과할 때 이 IP 패킷이 그대로 유지되어 End-to-end 로 전달되는 것을 그 목표로 하고 있다. 본 논문에서는 두 상이한 이동 패킷 통신 시스템간의 Seamless한 통신을 위한 핸드오프를 Mobile IPv6 [4]관점에서 접근할 것이다. (Voice에 대한 고려는 생략하였다.)

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A Study for Improvement Performance on Using Exponentially Weighted Moving Average at IPv6 networks (IPv6 네트웍 환경에서 지수가중적 이동평균 기법을 이용한 성능향상에 관한 연구)

  • Oh, Ji-Hyun;Jeong, Choong-Kyo
    • 한국정보통신설비학회:학술대회논문집
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    • 2007.08a
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    • pp.323-326
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    • 2007
  • Mobility Anchor Points are used for the mobility management in HMIPv6 networks. Currently a mobile node selects the MAP farthest away from itself as a new MAP among available candidates when it undertakes a macro handoff. With this technique, however, the traffic tends to be concentrated at a MAP with the largest domain size and the communication cost increases due to the distance between the mobile node and the MAP. In this work, we proposed a cost effective MAP selection scheme. When leaving the current MAP domain. the mobile node calculates the optimum MAP domain size to minimize the local mobility cost at the new MAP domain considering mobile node's velocity and packet transmission rate. The mobile node then selects a MAP domain of size close to the optimum domain size calculated among the candidate MAP domains. In this way, it is possible for the mobile node to select an optimal MAP adaptively taking the network and node states into account, thus reducing the communication cost.

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