• 제목/요약/키워드: Mobile IPv6 (MIPv6)

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An Efficient Soft Handoff Scheme Using Enhanced Resource Resonation Technique in Wireless MIPv6 Networks

  • Park, Tae-Hyun;Park, Ho-Ryong;Chun, Sang-Hun;Kwak, Kyung-Sup
    • Proceedings of the IEEK Conference
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    • 2002.07a
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    • pp.571-574
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    • 2002
  • In a recent wireless network environments, dynamic host configuration protocol (BHCP) service is used to assign IP addresses to mobile terminals. In IPv6 networks, it is necessary to introduce the concept of handoff to support a seamless service to mobile terminals. In a general soft handoff technique used by code-division multiple acces (CDMA) communication systems, the powers received to base station are simply compared to determine which base station will handle the signal to and from each mobile termins. However, in IPv6 network, to transmit data-oriented services, it is necessary to support an enhanced soft handoff technique with more security and quality of service. In this paper, we propose a scheme to reduce a signaling process of handoff in IPv6 network. Also, we propose a technique to reduce wasted reservation resources and to guarantee quality of service (QoS) using DHCP.

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Mobile Terminal for Real-time Hazardous Vehicle Management System (융합형 단말을 위한 IPv6/Mobile IPv6 기반이동성 지원 플랫폼 기술)

  • Kim, Won-Ki;Kim, Sang-Tae;Oh, Se-Il;Yang, Seung-Hyeop;Kim, Hyun-Deok;Park, Hong-Bae
    • Proceedings of the KIEE Conference
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    • 2008.10b
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    • pp.493-494
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    • 2008
  • 본 논문에서는 WiBro 및 이종망간의 이동성을 지원하는 Convergence 단말용 플랫폼을 제안한다. MIPv6과 MIH(802.21) 모듈 그리고 Unified network controller 모듈이 결합된 구조의 플랫폼으로 Ipv6 기반 이종망 사이에서의 이동성을 제공할 수 있다. 제안된 플랫폼 모듈은 향후 WiBro, WCDMA, HSDPA 등과 같은 차세대 무선 인터넷 서비스 환경에서 Communication, Data, Media 등 무선 Convergence 서비스를 제공할 수 있다.

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Improved Hierarchical Prefix Delegation Protocol for route optimization in nested NEMO (중첩된 NEMO에서의 경로 최적화를 위한 개선된 계층적 프리픽스 할당 프로토콜)

  • Rho Toung-Taeg
    • Journal of the Korea Society of Computer and Information
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    • v.10 no.5 s.37
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    • pp.227-236
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    • 2005
  • Hierarchical Prefix Delegation (HPD) protocol refers to a type of solution to problems inherent in non-optimal routing which occurs with Network Mobility (NEMO) basic solution. However, because HPD cannot improve the micro-mobility Problems, Problem surfaces each time Mobile Network Node (MNN) changes the attachment point; as happens also in a Mobile IPv6 (MIPv6) protocol in sen야ng Binding Update (BU) messages to Home Agent (HA) / Correspondent Nodes(CNs) By applying Hierarchical Mobile IPv6 protocol concept to HPD, this study Proposes an algorithm for effectively handling micro-mobility problems which occur with HPD in a nested NEMO environment. By sending BU only to nearby Mobility Anchor Point(MAP) during MNN location change within a MAP's domain, the proposed protocol will alleviate service disruption delays and signaling loads during the handover process, overcoming the limitations of HPD.

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Improved Hierarchical Prefix Delegation Protocol for route optimization in nested NEMO (중첩된 NEMO에서의 경로 최적화를 위한 개선된 계층적 프리픽스 할당 프로토콜)

  • Rho, Kyung-Taeg
    • Journal of the Korea Society of Computer and Information
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    • v.11 no.1 s.39
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    • pp.147-155
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    • 2006
  • Hierarchical Prefix Delegation (HPD) protocol refers to a type of solution to problems inherent in non-optimal routing which occurs with Network Mobility (NEMO) basic solution. However, because HPD cannot improve the micro-mobility problems, problem surfaces each time Mobile Network Node (MNN) changes the attachment point; as happens also in a Mobile IPv6 (MIPv6) protocol in sending Binding Update (BU) messages to Home Agent (HA) / Correspondent Nodes(CNs). By applying Hierarchical Mobile IPv6 protocol concept to HPD, this study proposes an algorithm for effectively handling micro-mobility problems which occur with HPD in a nested NEMO environment. By sending BU only to nearby Mobility Anchor Point(MAP) during MNN location change within a MAP's domain, the proposed protocol will alleviate service disruption delays and signaling loads during the handover process, overcoming the limitations of HPD.

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IPv6환경에서 이동성 보안 프로토콜의 제고

  • 권혁찬;안개일;나재훈;장종수
    • Review of KIISC
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    • v.15 no.3
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    • pp.29-39
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    • 2005
  • IT839의 3대 인프라 중 하나인 IPv6 환경에서 단말의 이동성을 지원하기 위한 기술로 IETF(Internet Engineering Task Force) 표준화 기구에서는 Mobile IPv6 기술을 제안하였으며, 현재 RFC3775와 RFC3776으로 기본 스펙이 확정된 상태이다. 상기 표준 문서에 의하면 이동노드의 위치 인증을 위해 RR(Return Routability)을 사용하도록 규정되어 있으며, 이동노드와 홈에이전트 구간의 보호를 위해 IPsec 사용을 제안하고 있다. IETF 기구는 또한 이동 중인 단말이 새로운 네트워크에 접속시 수행하는 Auto-configuraton을 통한 주소 생성 과정을 안전하게 하기 위한 프로토콜로 SEND(SEcure Neighbor Discovery) 라는 프로토콜을 제안하기도 하였다. 최근에 IPv6 단말의 이동성 보안과 관련하여 주요 이슈가 되고 있는 분야는 이동노드의 Bootstrapping기술이다. 이동노드의 Bootstrapping 시에 AAA와 같은 안전한 인프라를 이용하여 인증, 위치갱신, 홈에이전트 할당, 보안연계 설정 등의 작업을 해주고자 하는 것이 이 기술의 목표이다. 본 고에서는 IPv6 환경에서 이동성 지원을 위해 현재 정의된 그리고 연구 중인 보안 프로토콜들을 살펴보고 ETRI에서 개발한 MIPv6 Bootstrapping 기술을 간단히 소개하도록 한다.

An Enhanced Network-based Mobility Management Protocol for Fast Mobility Support

  • Lee, Sung-Kuen;Lee, Kyoung-Hee;Lee, Hyun-Woo;Hong, Seng-Phil;Park, Jin-Woo
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • v.5 no.11
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    • pp.1997-2015
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    • 2011
  • In this paper, we propose the enhanced network-based mobility management protocol, called enhanced proxy mobile ipv6 (E-PMIPv6), which can provide mobile nodes (MNs) with a fast and efficient mobility service in PMIPv6 domain. The proposed scheme can provide a fast and efficient mobility service to MNs and also the strength of network scalability and stability to an access network by proposing the dynamic virtual hierarchical network architecture. In addition, the pre-authentication procedure for an MN, based on the information of neighbor mobile access gateway (MAG) list in the enhanced-policy server (E-PS), is proposed to support seamless handover by reducing MN's handover latency. Through performance evaluations of numerical analyses and simulations, we have confirmed and verified the superiority of the proposed scheme compared to the conventional proxy mobile ipv6 (PMIPv6).

Scheme of Mobile IP Handoff Using Move Prediction in Mobile Computing Environments (이동 컴퓨팅 환경에서 이동성 예측을 이용한 Mobile IP 핸드오프 기법)

  • Park, Seol-Min;Hawang, Bu-Hyun
    • Proceedings of the Korea Information Processing Society Conference
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    • 2003.11b
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    • pp.1265-1268
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    • 2003
  • 사용자의 인터넷 환경이 점차 무선 접속을 통한 인터넷의 사용과 실시간 응용 데이터의 사용이 늘어가는 주세에 따라, 이동 인터넷 서비스를 하기 위한 방안으로 Mobile IPv6(MIPv6)가 제시되었다. 그러나 MIPv6에서, 현재 표준대로 핸드오프를 하는 경우에 길게는 수초에 이르는 핸드오프 지연이 생기고 그로 인한 패킷의 유실과 지연이 초래된다. 이것은 멀티미디어 스트리밍과 같이 실시간 데이터의 경우 치명적인 단점이 된다. 이에 이동노드가 외부 네트워크로 이동하는 경우 낮은 지연을 가지는 핸드오프 방법으로 fast핸드오프 방법이 있다. fast핸드오프는 히스토리 파일에 있는 임의의 한 이동노드가 전에 방문한 셀들에 대한 정보를 사용하여 이동전에 등록에 관한 패킷을 다음 이동할 셀 외부에이전트에게 미리 전송하고 이동을 하는 방법이다. 이 논문에서는 무선 단말의 이동 패턴 및 캐쉬 내 방향그래프(Directed Graph) 형식으로 작성한 히스토리 파일을 이용하여 이동성 예측 실패 시 패킷소실을 없앨 수 있는 방안에 대해 제안한다.

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Secure Bootstrapping Methods of a Mobile Node on the Mobile IPv6 Network (IPv6기반 이동인터넷 환경에서 이동노드의 안전한 시동에 관한 방법)

  • Nah Jaehoon;Chung Kyoil;Han Chi-Moon
    • Journal of the Institute of Electronics Engineers of Korea CI
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    • v.42 no.3 s.303
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    • pp.1-8
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    • 2005
  • At IETF (Internet Engineering Task Force), recently RFC3775, RFC3776 documents about the mobile IPv6 were standardized by IETF (Internet Engineering Task Force). Those specifications propose that during the roaming, the mobile node sends securely the binding update to the home agent and the correspondent node after setting the security association between Mobile Node and Home Agent. But there is no secure bootstrapping method between a mobile node and a home agent at the two RFC documents. This paper proposed a method for the secure bootstrapping between a mobile node and a home agent. This makes the authentication, binding update, home agent assignment, security association distribution through the AAA-based secure channel between mobile node and home agent. And the proposed method was analyzed in the view of the procedure, round trip and security strength.

Analysis of Performance and IKEv2 Authentication Exchange model in Mobile IPv6 Network (MIPv6망에서 IKEv2 인증 교환 모텔 및 성능 분석)

  • Ryu, Dong-Ju;Kim, Gwang-Hyun;Kim, Dong-Kook
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.31 no.11A
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    • pp.1085-1091
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    • 2006
  • For an experiment in this paper, designed test bed to secure confidentiality of data and safe transmission that Mobile node exchanges in Mobile network. And, For IPsec use that support basically in MIPv6, modeling and experimented IKEv2 protocol that is used for reliable authentication key management and distribution between End Point. When Mobile node handoff in Mobile network, analyzed effect that authentication key re-exchange and limited bandwidth that happen often get in key exchange. And studied about Performance and latency about authentication setting and exchange process that use multi interface. To conclusion, when Mobile node transmits using IPSec, re-authentication of key confirmed that re-setting by limit of bandwidth that existent Mobile network has can be impossible. According to other result, proposed MN's multi interface is expected to minimise key exchange latency by hand-off when transmit IPSec.

Inter-domain Authentication Mechanism using MIPv6 in Portable Internet Environments (휴대인터넷 환경에서 모바일 IPv6을 이용한 인터 도메인간 인증)

  • Jeong Yoon-Su;Woo Sung-Hee;Lee Sang-Ho
    • Journal of the Korea Society of Computer and Information
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    • v.11 no.2 s.40
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    • pp.223-230
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    • 2006
  • Portable Internet is a new service providing a high-speed wireless Internet service. The high-speed wireless Internet service guarantees terminal mobility. Portable Internet is expected to commercialize in 2005. Network expansion and terminal mobility should be guaranteed in of order to efficiently introduce and distribute portable Internet service. Accordingly, the thesis suggests a mechanism which applies mobile IPv6 technology and supports inter-domain authorization In order to guarantee expansion and mobility of portable Internet. The suggested mechanism applies diameter protocol to the mobile IPv6 to improve securities. Also, The suggested mechanism safely transmits data at the minimal signal number, to guarantee the data secrecy.

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