An enhancement of handoff latency reduction mechanism for mobile internet protocol version 6 (MIPV6) /

Mobile Internet Protocol Version 6 (MIPv6) is envisioned for next generation networks to achieve seamless communication as it has more suitable features than the existing version. However, MIPv6 is not yet deployed for some limitations like handoff latency and security that degrades Quality of Servi...

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Bibliographic Details
Main Author: Masud, Mosharrof Hussain
Format: Thesis
Language:English
Published: Kuala Lumpur : Kulliyyah of Engineering, International Islamic University Malaysia, 2013
Subjects:
Online Access:http://studentrepo.iium.edu.my/handle/123456789/5126
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040 |a UIAM  |b eng 
041 |a eng 
043 |a a-my--- 
050 0 0 |a TK5105.8865 
100 1 |a Masud, Mosharrof Hussain 
245 1 3 |a An enhancement of handoff latency reduction mechanism for mobile internet protocol version 6 (MIPV6) /  |c by Mosharrof Hussain Masud 
260 |a Kuala Lumpur :  |b Kulliyyah of Engineering, International Islamic University Malaysia,   |c 2013 
300 |a xviii, 104 leaves :  |b ill. ;  |c 30cm. 
500 |a Abstracts in English and Arabic. 
500 |a " A dissertation submitted in fulfilment of the requirement for the degree of Master of Science (Computer and Information Engineering)."--On t.p. 
502 |a Thesis (MSCIE)--International Islamic University Malaysia, 2013. 
504 |a Includes bibliographical references (leaves 98-104). 
520 |a Mobile Internet Protocol Version 6 (MIPv6) is envisioned for next generation networks to achieve seamless communication as it has more suitable features than the existing version. However, MIPv6 is not yet deployed for some limitations like handoff latency and security that degrades Quality of Service (QoS). Therefore, two different handoff latency solutions are proposed for MIPv6 networks. Handoff latency solution 1 consists of two parts related to Layer 2 (L2) and Layer 3 (L3), using fuzzy logic to reduce latency of L2 scanning phase, and a Parallel Duplicate Address Detection (PDAD) to reduce the address configuration time in L3. Solution 2 is incorporated with IEEE 802.21 ~MIH (Media Independent Handover) assisted with MIPv6 which configures the alternative interface while the mobile node (MN) is using an active interface without disturbing the current session. These two mechanisms are evaluated using performance metrics of handoff latency and packet Joss. The performance of the mechanisms is evaluated using OMNeT ++ and MA TLAB. The overall hand off latency is reduced from standard I 300 ms to 500 ms using solution 1, a 60% reduction, with packet loss reduction of 70%. The second solution reduces both handofflatency and packet loss by 75%. 
596 |a 1 
650 0 |a Internet telephony 
650 0 |a Mobile communication systems 
650 0 |a Wireless communication systems 
655 7 |a Theses, IIUM local 
690 |a Dissertations, Academic  |x Department of Electrical and Computer Engineering  |z IIUM 
710 2 |a International Islamic University Malaysia.  |b Department of Electrical and Computer Engineering 
856 4 |u http://studentrepo.iium.edu.my/handle/123456789/5126 
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