• Title/Summary/Keyword: Fast MIPV6

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Design of Fast-Handover for Vertical Network Handover with MIH in PMIPv6 (PMIPv6에서 MIH를 이용한 이 기종 망 간의 빠른 핸드오버기법 설계)

  • Kim, Hyung-Heon;Park, Seok-Cheon
    • 한국IT서비스학회:학술대회논문집
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    • 2009.05a
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    • pp.331-334
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    • 2009
  • 모바일 단말의 이동성을 보장하기 위하여 IETF의 MIPv4와 MIPv6가 표준 제정되었으나 이는 모바일 단말에 무거운 프로토콜 스택을 탑재하게 함으로서 그동안 널리 활용되지 못하였다. 이에 대한 해결 방안으로 IETF Netlmm WG을 중심으로 PMIPv6의 표준 제정을 마쳤다. 이는 모바일 단말의 이동성 보장을 위하여 LMA와 MAG 라는 추가 구성요소를 통해 네트워크 기반의 이동성 관리를 지원하는 기법이다. 그러나 모바일 단말이 MAG 간 이동 시에는 핸드오버 지연 시간동안 데이터 패킷 손실과 순서 뒤바뀜 현상이 여전히 존재하게 된다. 이에 대하여 본 논문에서는 PMIPv6에서 IEEE 802.21 MIH를 활용하여 이 기종 망간의 핸드오버를 지원하고 핸드오버 과정에서 발생할 수 있는 데이터의 손실 및 데이터 순서 뒤바뀜 현상을 방지할 수 있는 방안을 제안한다.

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Performance Evaluation of Improved Fast PMIPv6-Based Network Mobility for Intelligent Transportation Systems

  • Ryu, Seonggeun;Choi, Ji-Woong;Park, Kyung-Joon
    • Journal of Communications and Networks
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    • v.15 no.2
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    • pp.142-152
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    • 2013
  • The network mobility basic support (NEMO BS) protocol has been investigated to provide Internet connectivity for a group of nodes, which is suitable for intelligent transportation systems (ITS) applications. NEMO BS often increases the traffic load and handover latency because it is designed on the basis of mobile Internet protocol version 6 (MIPv6). Therefore, schemes combining proxy MIPv6 with NEMO (P-NEMO) have emerged to solve these problems. However, these schemes still suffer from packet loss and long handover latency during handover. Fast P-NEMO (FP-NEMO) has emerged to prevent these problems. Although the FP-NEMO accelerates handover, it can cause a serious tunneling burden between the mobile access gateways (MAGs) during handover. This problem becomes more critical as the traffic between the MAGs increases. Therefore, we propose a scheme for designing an improved FP-NEMO (IFP-NEMO) to eliminate the tunneling burden by registering a new address in advance. When the registration is completed before the layer 2 handover, the packets are forwarded to the new MAG directly and thereby the IFP-NEMO avoids the use of the tunnel between the MAGs during handover. For the evaluation of the performance of the IFP-NEMO compared with the FP-NEMO, we develop an analytical framework for fast handovers on the basis of P-NEMO. Finally, we demonstrate that the IFP-NEMO outperforms the FP-NEMO through numerical results.

A Fast Global Mobility Supporting Scheme for IPv6 Using Global Mobility Agent (GMA) (Global Mobility Agent (GMA) 기반의 신속한 IPv6 전역 이동성 지원 방안)

  • Ahn, Jin-Su;Seo, Won-Kyeong;Choi, Jae-In;Cho, You-Ze
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.35 no.8B
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    • pp.1105-1114
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    • 2010
  • The Proxy Mobile IPv6 (PMIPv6) has been standardized by the IETF NETLMM WG for network-based mobility management. The PMIPv6 can provide IP mobility for Mobile Nodes (MNs) with low handover latency and less wireless resource usage. But, since the PMIPv6 is basically designed for local mobility management, it cannot support directly global mobility management between different PMIPv6 domains. In the PMIPv6, since all traffic is routed through a Local Mobility Anchor (LMA), it causes a long end-to-end delay and triangular routing problem. Therefore, in this paper, we propose a fast network-based global mobility management scheme and route optimization scheme with a new network entity, called Global Mobility Agent (GMA). Numerical analysis and simulation results show that the proposed scheme is able to support global mobility between different public domains with low handover latency and low end-to-end delay, compared with the PMIPv6.

M-FHMIP mechanism for mobile multicasting in IP networks

  • Park, Young-Dug;Rhee, Woo-Seop
    • International Journal of Contents
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    • v.4 no.3
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    • pp.29-34
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    • 2008
  • Fast handover is essential to support seamless multicast service in MIPv6. To reduce handover latency of multicast, there are two handover mechanisms, one is M-FMIP that prepares fast L3 handover before L2 handover and the other is M-HMIP that performs local area mobile multicast management. This paper proposes M-FHMIP that integrates an advantage of M-FMIP and M-HMIP, and analyzes the multicast handover latency.

Mobility Management Scheme based on User Mobility QoS and Security-Effective Network in Heterogeneous Mobile Networks (이종의 모바일 네트워크에서 사용자 이동성 QoS와 보안효과적인 네트워크 기반의 이동성관리 기법)

  • Lee, Hyeungwoo;Jeong, Jongpil
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.15 no.2
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    • pp.87-97
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    • 2015
  • To support the efficient mobility MIPv6v, FMIPv6, HMIPv6 and host-based mobility management protocols have been developed. AAAC (Authentication, Authorization, Accounting and Charging) system is applied in this paper analyzed the the existing IPv6 PMIPv6, FPMIPv6 network security effective and IPv6 MMP (Mobile Management Protocol) Features and performance analysis is performed. And IPv6 MMP seamless transfer performance in terms of packet loss probability, will be analyzed. That can be efficiently used as a method for the integration of QoS and mobility so that you can manage and control the resources presented QoSB usage. Results of evaluation results showed a better overall fast handover structure of mobility management techniques. PMIPv6 and FPMIPv6 in many respects the most efficient structure that can be specifically, a fast handover of the structure of the network-based mobility management scheme showed the best results.

Authentication of Fast Handovers for Mobile IPv6 using Return Routability (Return Routability를 이용한 Fast Handovers for Mobile IPv6 인증기법)

  • Shin, Tea-Il;Mun, Young-Song
    • Journal of Internet Computing and Services
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    • v.9 no.1
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    • pp.1-8
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    • 2008
  • IETF has proposed Fast Handovers for Mobile IPv6 (FMIPv6) for efficient mobility management, FMIPv6 has no solutions to protect binding updates. Previous researches have mainly concentrated on using AAA, public cerificates or cryptographic algorithms to secure binding updates. However the approaches need a particular infrastructure or a heavy processing cost to setup secure associations for handovers. Proposed scheem provides authentication for FMIPv6 without infrasturcture and costly cryptographic algorithms by extending Return Routability Protocol. Also proposed scheme is oble to be used for various existing handover mechanisms in IPv6 network.

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An Efficient Authentication Mechanism for Fast Mobility Services in MIPv6 (MIPv6에서 빠른 이동성 서비스를 위한 효율적인 인증 방법)

  • Lee Seung-Yeon;Huh Eui-Nam
    • Journal of Internet Computing and Services
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    • v.7 no.3
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    • pp.1-11
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    • 2006
  • If a mobile node out of home domain asks to provide mobility service, the mobile should be permitted by the home domain. This can be accomplished by the usage of AAA but the recent studies have shown its weakness to fail the ability of mobile node. This study suggests Fast Handoff model which will shorten permission time by AAA and allow the mobility service to be more efficient. Our suggestion with Assertion function is a new approach to assist authentication capability through mutual authentication of each V_AAA when the distance between HA and itself gets far or its delay time becomes longer. Our suggestion verifies its efficiency by cost analysis.

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Seamless Mobility Management in IP-based Wireless/Mobile Networks with Fast Handover

  • Park, Byung-Joo;Hwang, Eun-Sang;Park, Gil-Cheol
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • v.3 no.3
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    • pp.266-284
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    • 2009
  • The challenges of rapidly growing numbers of mobile nodes in IPv6-based networks are being faced by mobile computing researchers worldwide. Recently, IETF has standardized Mobile IPv6 and Fast Handover for Mobile IPv6(FMIPv6) for supporting IPv6 mobility. Even though existing literatures have asserted that FMIPv6 generally improves MIPv6 in terms of handover speed, they did not carefully consider the details of the whole handover procedures. Therefore, in conventional protocols, the handover process reveals numerous problems manifested by a time-consuming network layer based movement detection and latency in configuring a new care of address with confirmation. In this article, we study the impact of the address configuration and confirmation procedure on the IP handover latency. To mitigate such effects, we propose a new scheme which can reduce the latency taken by the movement detection, address configuration and confirmation from the whole handover latency. Furthermore, a mathematical analysis is provided to show the benefits of our scheme. In the analysis, various parameters are used to compare our scheme with the current procedures, while our approach is focused on the reduction of handover latency. Finally, we demonstrate total handover scenarios for the proposed techniques and discussed the major factors which contribute to the handover latency.

Handover Mobility Scenario Classification and Fast Handover Performance Analysis in NEMO Network (NEMO에서의 이동 시나리오 분류 및 빠른 핸드오버 성능 분석)

  • Choi, Seung-Joon;Su, Dong;Yoo, Sang-Jo
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.31 no.11B
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    • pp.987-996
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    • 2006
  • In NEMO scenarios, mobile node's variety of movements and mobile router's point of attachment changes can result in handover. This handover process needs additional time to finish due to the multiple levels of indirection involved in NEMO. And the performance issues of mobile node's handover such as handover delay and packet loss in above cases haven't been studied thoroughly. So, in this paper, we define fast handover failure cases in hierarchical mobile IPv6 network based NEMO. We briefly described NEMO architecture and handover procedures of FMIPv6 and HMIPv6. And then, we classified mobile node or mobile router's movement pattern into several scenarios. Analysis for the fast handover classified NEMO scenarios, in terms of handover latency and packet delivery cost have been performed.

A Study on Security Architecture for F-MIPv6 (F-HMIPv6 지원을 위한 보안 아키텍처)

  • Son, Sang-Woo;Kim, Mun-Ki;Rhee, Byung-Ho
    • Proceedings of the IEEK Conference
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    • 2006.06a
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    • pp.7-8
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    • 2006
  • F-HMIPv6 is protocol that supports fast handovers for Hierarchical Mobile IPv6. Unlike HMIPv6 (Hierarchical Mobile IPv6), it sends FBU(Fast Binding Update) by predicted Router's Information for a potential handover. But, The current version of this protocol doesn't ensure impeccably between mobile node and router. To make up for the weak points of the security, we propose the architecture for F-HMIPv6 protocol to structurally reinforce the security and improve weak security of among mobile node, MAP(Mobility Anchor Point), and routers for binding update when mobile node conducts handovers.

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