• Title/Summary/Keyword: Internet protocol (IP) handover

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A Fast Inter-Domain Network-based IP Mobility Scheme for Urban Areas

  • Taghizadeh, Alireza;Wan, Tat-Chee;Budiarto, Rahmat
    • Journal of Communications and Networks
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    • v.16 no.6
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    • pp.645-655
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    • 2014
  • Latency, an identified element of Internet protocol (IP) mobility protocol execution, can reduce handover performance in mobile networks. Although the performance can be improved by applying an effective network-based IP mobility scheme in place of the traditional host-based alternatives, the existing inter-domain extensions of network-based IP mobility continue to suffer from an extended handover latency. This paper proposes a new inter-domain network-based IP mobility scheme based on node movement prediction. The proposed scheme accelerates the handover by preparing the future domain of the mobile node in a proactive manner. Analytical and simulation-based evaluations confirm improved performance of the proposed scheme in terms of handover latency and packet loss compared with existing schemes.

Fast Network based Localized Mobility Management protocol using Media Independent Handover Services (MIH 서비스를 이용한 고속 NetLMM 프로토콜)

  • Park, Si-Hyun;Kim, Young-Han
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.43 no.11 s.353
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    • pp.35-43
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    • 2006
  • In this paper we have presented a network based high-speed handover protocol using NetLMM(Network based Localized Mobility Management) WG protocol in IETF(Internet Engineering Task Force). We use IEEE 802.21 MIHS(Media Independent Handover Services) for improving handover latency and we analysis proposed Fast NetLMM protocol performance using Fluid Flow Mobility Model. Evaluation results show that the Fast NetLMM protocol performance is better than other mobility management protocols.

Design and Evaluation of Traffic Control Mechanism with QoS in FMIPV6 (FMIPv6에서 QoS를 고려한 트래픽 제어 메커니즘의 설계 및 평가)

  • Park Seok-Cheon
    • Journal of the Korea Society of Computer and Information
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    • v.10 no.6 s.38
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    • pp.261-268
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    • 2005
  • Recently, Many People have studied in Mobile Ipv6 to provide seamless service. FMIPv6 is designed to reduce the procedure of handover and will be used SIP, VoIP and Mobile Internet moving picture service. But, If mobile node moves fast, it will happen to packet loss and interruption problem in handover procedure. So, In this paper, designed and evaluated traffic control mechanism using WFQ scheduling to reduce the packet loss that occurred to handover procedure.

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Use of FMIPv6 and Selective handover mechanisms based on hierarchical MAP information (FMIPv6 사용과 계충적인 MAP 정보 기반의 선택적인 핸드오버 매커니즘)

  • Kim, Jae-Seung;Kim, Dong-Il;Lee, Hong-Gi
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2007.10a
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    • pp.87-90
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    • 2007
  • Many moderncommunication technologies are developing based on internet protocol (IP) and there is many work to archive seamless mobility service. IETF proposed MIPv6 protocol that uses IPv6 to provide mobility services to mobile node however it has some limits like sending and receiving too many messages during binding update (BU) procedure. So, now a day it makes HMIPv6(Hierarchical Mobile IPv6). HMIPv6 solves overhead and transmission delay problem in MAP(Mobile Anchor Pointer), but it can't accomplish effectively Macro handover between MAPs. This paper introduces use of FMIPv6 and Selective handover mechanisms based on hierarchical MAP information in HMIPv6 for improvement of handover efficiency.

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Design and Evaluation on End-to-End Seamless QoS in Mobile SCTP (이동성 SCTP 환경에서 종단간 seamless QoS 관리체계 설계 및 평가)

  • Kim, Dae-Young;Ahn, Byung-Ho;Cho, Kuk-Hyun
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.31 no.10B
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    • pp.909-918
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    • 2006
  • Recently, the qualities of the call and QoS of data service in mobile wireless IP networks inclusive of internet wired networks are very challenging issues. IntServ, DiffServ and MPLS model for supporting QoS in wired networks are representative models which are investigated generally up to now. While, MIPv4(Mobile IPv4) and MIPv6 are proposed to support mobility management for mobile wireless internet networks. But, MIPv4 and MIPv6 based UDP and TCP/IP protocol have many issues to be solved like efficient QoS and frequent handover management. In this paper, we propose a efficient management platform to support seamless data services and end-to-end QoS management in IP-based wireless mobility environments using transport layer protocol, SCTP which support multi-homing and multi-streaming. We used SCTP protocol and IntServ technology for end-to-end communications to support multi-homing and seamless QoS management in the IP-based mobile wireless networks.

A Study on Fast Handover Scheme for Seamless Multimedia Transmission in Wireless Networks (무선환경에서 끊김없는 멀티미디어 전송을 위한 고속의 핸드오버 기법 연구)

  • Song, Min-Ho;Park, Byung-Joo;Park, Gil-Cheol;Kim, Yong-Tae;Lee, Dong-Cheul;Chang, Byeong-Yun
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.9 no.3
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    • pp.101-108
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    • 2009
  • Since the use of wireless communication instruments was standardized, users expect to be provided with seamless information whenever and wherever they use the instruments. Also, some technology is required to satisfy the users' needs which will cover their mobility. To support the mobility of host, the Internet Engineering Task Force (lETF) Mobile IP Working Group proposed a protocol called MIPv6 (Mobile IPv6). But in the case of the existing MIPv6, sometimes Mobile Node cannot receive data packet if Handover occurs although it is a temporal phenomenon. For solving these Handover problems, there are many methods like FMIPv6 (Fast Handover for Mobile IPv6) and HMIPv6 (Hierarchical Mobile IPv6) have been suggested. This paper suggested the use of Dual Buffer of Access Point and an effective way of registration as a way of reducing delayed time caused by Handover. Also, it analyzed and compare the existing MIPv6 with a proposed scheme concerning delayed time of Handover. Finally, the main objective of this paper is to proposed scheme that can reduce the delayed time of Handover compare to the existing MIPv6.

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Handover Mechanism for Real­-Time Service in High Speed Wireless Internet (초고속 무선 인터넷에서의 실시간 서비스를 위한 핸드오버 메커니즘)

  • 박호진;김화성;이상호;김영진
    • Proceedings of the Korean Information Science Society Conference
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    • 2003.10c
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    • pp.421-423
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    • 2003
  • 이동전화, PDA(Personal Digital Assistant) 등과 같은 개인 이동 단말기 보급의 증가 추세와 더불어 무선 환경에서의 인터넷 접속에 대한 요구가 증가 하고 있다. Mobile IP(Internet Protocol)는 무선 환경에서의 인터넷 접속을 지원하고, 단말의 이동성을 보장 하는 기술이다. 현재의 Mobile IP에서는 핸드오프 시 패킷 데이터 유실이 발생 하고 이러한 패킷 데이터 유실 방지를 위하여 별도의 메커니즘 적용에 따른 시간 지연이 발생한다. 본 논문에서는 실시간 서비스에서의 IP 패킷 데이터 핸드오버 시 패킷 데이터 유실 방지와 패킷 데이터의 순서 뒤바뀜 방지를 위한 방법을 제시한다.

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Advanced Fast Handover Scheme for Reliable Multimedia Communication in IP-based Wireless/Mobile Networks (안정적인 멀티미디어 통신을 위한 Mobile IPv6 네트워크에서 진보된 고속 핸드오버 기법)

  • Lee, Ki-Jeong;Park, Byung-Joo;Park, Gil-Cheol
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.9 no.3
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    • pp.93-99
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    • 2009
  • The Internet Engineering Task Force (lETF)proposed the Mobile IPv6 protocol to provide host mobility in IPv6-based network and to offer a standardized technology. However, Mobile IPv6 (MIPv6) is not applied in actual network because of long handover latency and packet loss problems. Therefore, to compensate these drawbacks, many studies are in progress and FMIPv6 (Fast handover for Mobile IPv6) is one of the studies that has been proposed to supplement the shortcomings of MIPv6. But there are problems occurred in using router tunneling which causes packet loss and out of sequence problems. In this paper, we propose an Advanced Mobile IPv6 (AMIPv6) protocol to minimize the handover latency when Mobile Node frequently moves in each subnet. We compared the performance analysis of AMIPv6 handover latency with MIPv6 handover latency in the same network environment to prove that AMIPv6 is more efficient.

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A study for efficient Media Independent Handover in environment of IEEE 802.11 wireless network interface (IEEE 802.11 무선 네트워크 인터페이스 환경에서 효율적인 개체무관 핸드오버를 위한 연구)

  • Choi, Ji-Hoon;Kim, Dong-Il
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2008.10a
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    • pp.66-69
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    • 2008
  • As a mobility support for IP have studied, Internet Engineering Task Force(ITEF) standardized the mobile IPv6 protocol. When a mobile node moves between networks, MIPv6 maintains connectivity to network and supports seamless communication, and these processes are called a Handover. IEEE 802.21 standardized MIH(Media Independent Handover) for seamless Handover. MIH used three services for Handover between low layer and upper layer. In this paper, we designed two modes on existing MIH for seamless Handover. We implemented a dual-interface mobile host(MH) model in network simulation2 (ns2) to evaluate how it performs in comparison with single-interface MH.

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A Cross-layering Handover Scheme for IPv6 Mobile Station over WiBro Networks (와이브로 망에서 IPv6 이동 단말의 교차 계층 핸드오버 기법)

  • Jang, Hee-Jin;Han, Youn-Hee;Hwang, Seung-Hee
    • Journal of KIISE:Information Networking
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    • v.34 no.1
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    • pp.48-61
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    • 2007
  • WiBro (Wireless Broadband) service, developed in Korea, can provide the host mobility while its users hang around within the subnet. Next-generation Internet protocols, IPv6 and Mobile IPv6 (MIPv6), provide a plenty of addresses to the nodes and enable the handover between different subnets. However, MIPv6 is not enough to support a real time service such as VoIP (Voice over IP) due to the long latency, and it is necessary to develop an enhanced handover mechanism which is optimized to the WiBro networks. In this paper, we suggest an improved fast handover mechanism while the mobile node moves around WiBro networks. The proposal is based on Fast Mobile IPv6 (FMIPv6) which is the representative protocol for fast handover, and reduces the handover latency by the close interaction between the link layer (WiBro MAC) and IP layer (FMIPv6). Finally, we analyze the performance of proposed mechanism through the mathematical analysis.