上海交通大学学报(英文版) ›› 2015, Vol. 20 ›› Issue (2): 209-217.doi: 10.1007/s12204-015-1609-8
BHASKAR Subbe Gowda1*, SATISH KUMAR Gandluru Arthur Edwin2, RAMANA REDDY Patil3
出版日期:
2015-04-30
发布日期:
2015-04-02
通讯作者:
BHASKAR Subbe Gowda
E-mail:bhaskar.neethu@gmail.com
BHASKAR Subbe Gowda1*, SATISH KUMAR Gandluru Arthur Edwin2, RAMANA REDDY Patil3
Online:
2015-04-30
Published:
2015-04-02
Contact:
BHASKAR Subbe Gowda
E-mail:bhaskar.neethu@gmail.com
摘要: The future generation networks or 4G networks constitute of varied technologies converged over the Internet protocol version 6 (IPv6) core. The 4G networks offer varied services over different interfaces to the user nodes. Mobility management in 4G networks is an issue that exists. The handover protocols for mobility management in 4G networks that currently exist, do not consider wireless signal degradation during handover operations. This paper introduces the Noise Resilient Reduced Registration Time Care of Mobile IP (NR RRTC: MIP) protocol for handover management. A handover decision algorithm based on the signal strength measured by the user nodes is considered in the NR RRTC: MIP protocol. A simulation study is discussed in the paper to evaluate the performance of the NR RRTC: MIP protocol. The results obtained from the simulation study prove that the NR RRTC: MIP protocol effectively reduces handover latencies and improves network performance.
中图分类号:
BHASKAR Subbe Gowda1*, SATISH KUMAR Gandluru Arthur Edwin2, RAMANA REDDY Patil3. Design and Analysis of an Adaptive Handover Protocol for 4G Networks[J]. 上海交通大学学报(英文版), 2015, 20(2): 209-217.
BHASKAR Subbe Gowda1*, SATISH KUMAR Gandluru Arthur Edwin2, RAMANA REDDY Patil3. Design and Analysis of an Adaptive Handover Protocol for 4G Networks[J]. Journal of shanghai Jiaotong University (Science), 2015, 20(2): 209-217.
[1] Khana H, Qadeerm A, Ansarij A, et al. 4G as a next generation wireless network [C]// International Conference on Future Computer and Communication.Kuala Lumpar, Malaysia: IEEE, 209: 334-338. [2] Prakash S, Akki C B, Dhruve K. Handoff management architecture for 4G networks over MIPv6 [J].IJCSNS International Journal of Computer Science and Network Security, 2010, 10(2): 267-274. [3] Choi J. 4G, solution for convergence? [C]//Microwave Symposium Digest. San Francisco, USA: IEEE, 2006:843-846. [4] Lai W K, Chiu J C. Improving handoff performance in wireless overlay networks by switching between twolayer IPv6 and one-layer IPv6 addressing [J]. IEEE Journal on Selected Areas in Communications, 2005,23(11): 2129-2137. [5] Chandavarkar B R, Reddy G R M. Survey paper:Mobility management in heterogeneous wireless networks[J]. Procedia Engineering, 2012, 30: 113-123. [6] Sun J, Howie D P, Sauvola J J. Mobility management techniques for the next-generation wireless networks[C]//SPIE Proceedings of Wireless and Mobile Communications. Beijing, China: SPIE, 2011: 155-166. [7] Sen J. Trends in Telecommunications Technologies[M]. Rijeka, Croatia: InTech, 2010. [8] RFC 5944, IP mobility support [S]. [9] RFC 6275, Mobility support in IPv6 [S]. [10] Taleb T, Letaief K. A cooperative diversity based handoff management scheme [J]. IEEE Transactions on Wireless Communications, 2010, 9(4): 1462-1471. [11] RFC 5380, Hierarchical mobile IPv6 mobility management (HMIPv6) [S]. [12] Shaojian F, Atiquzzaman M. Handover latency comparison of SIGMA, FMIPv6, HMIPv6, FHMIPv6[C]//Global Telecommunications Conference,St. Louis, USA: IEEE, 2005: 3809-3813. [13] Costa X P, Schmitz R, Hartenstein H, et al.A MIPv6, FMIPv6 and HMIPv6 handover latency study: Analytic approach [C]//Proceedings of IST Mobile & Wireless Telecommunications 2002. Thessaloniki,Greece: Local Organizing Committee, 2002: 1-6. [14] Bhaskar S, Satishkumarg A E, Ramanareddy P, et al. A seamless adaptive mobility management scheme for 4-G network [J]. International Journal of Computer Science and Network Security, 2013, 13(1):39-45. [15] Lee C W, Chen L M, Chen M C, et al. A framework of handoffs in wireless overlay networks based on mobile IPv6 [J]. IEEE Journal on Selected Areas in Communications, 2005, 23(11): 2118-2128. [16] RFC 5949, Fast handovers for mobile IPv6 [S]. [17] Perezcosta X, Torrent-Moreno M, Hartenstein H. A performance comparison of Mobile IPv6,Hierarchical Mobile IPv6, fast handovers for Mobile IPv6 and their combination [J]. ACM SIGMOBILE Mobile Computing and Communications Review, 2003,7(4): 5-19. [18] Jung H Y, Kim E A, Yi J W, et al. A scheme for supporting fast handover in hierarchical mobile IPv6 networks [J]. ETRI Journal, 2005, 27(6): 798-801. [19] Makaya C, Samuel P. An analytical framework for performance evaluation of IPv6-Based mobility management protocols [J]. IEEE Transactions on Wireless Communications, 2008, 7(3): 972-983. [20] Pollini G P. Trends in handover design [J]. IEEE Communications Magazine, 1996, 34(3): 82-90. [21] Marichamy P, Chakrabarti S, Maskara S L.Performance evaluation of handoff detection schemes[C]// TENCON Conference on Convergent Technologies for the Asia-Pacific Region. Bangalore, India:IEEE, 2003: 643-646. [22] Chang B J, Chen J F. Cross-layer-based adaptive vertical handoff with predictive RSS in heterogeneous wireless networks [J]. IEEE Transactions on Vehicular Technology, 2008, 57(6): 3679-3692. [23] Nasser N, Hasswa A, Hassanein H. Handoffs in fourth generation heterogeneous networks [J]. IEEE Communications Magazine, 2006, 44(10): 96-103. [24] Cho Y, Oh E, Hong D. A new modeling scenario and analysis of handoff algorithms in multisector systems withcochannel interference [J]. IEEE Transactions on Vehicular Technology, 2009, 58(3): 1407-1414. |
[1] | LIN Heyun (林和昀), YUAN Chaowei (袁超伟), DU Jianhe (杜建和), HU Zhongwei (胡仲伟). Tensor-Based Joint Channel Estimation and Symbol Detection for AF MIMO Relay Networks[J]. Journal of Shanghai Jiao Tong University (Science), 2020, 25(1): 88-96. |
[2] | GE Jia (葛佳), QIU Mengting (邱梦婷), YU Hui* (俞晖). Joint Optimization of Spectral and Energy Efficiency for Multi-Pair Full-Duplex Two-Way Relay Networks with Imperfect Channel State Information[J]. 上海交通大学学报(英文版), 2017, 22(2): 161-166. |
[3] | . [J]. Journal of Shanghai Jiao Tong University(Science), 2015, 20(6): 654-659. |
[4] | HUANG Zheng-yong* (黄正勇), YU Hui (俞 晖), GUAN Yun-feng (管云峰), CHEN Kun (陈 坤). Indoor Localization with a Crowdsourcing Based Fingerprints Collecting[J]. 上海交通大学学报(英文版), 2015, 20(5): 548-557. |
[5] | WANG Rui (王睿), JI Hong (纪红), LI Xi*(李曦). A Distributed Power Allocation Scheme in Green Cognitive Radio Ad Hoc Networks[J]. 上海交通大学学报(英文版), 2015, 20(2): 195-201. |
[6] | LI Meng-shi* (李孟实), YU Hui (俞 晖), LUO Han-wen (罗汉文), XU You-yun (徐友云). Pragmatic Physical Layer Abstraction Method Based on Bit-LLR-Wise Exponential Effective SNR Mapping for Bit Interleaved Coded Orthogonal Frequency Division Multiplexing System[J]. 上海交通大学学报(英文版), 2014, 19(2): 173-180. |
[7] | LI He1 (李 鹤), GAN Xiao-ying1,2* (甘小莺), CHEN Shi-yang1 (陈时阳), FENG Xin-xin1 (冯心欣). Multi-Channel Spectrum Sensing in Cognitive Ad-hoc Networks: An Energy-Efficient Manner[J]. 上海交通大学学报(英文版), 2013, 18(5): 513-519. |
[8] | ZHOU Bao-long1,2* (周宝龙), JIANG Ling-ge1 (蒋铃鸽), HE Chen1 (何 晨). Robust Ergodic Rate Transmission for Time Division Duplex Beamforming Systems[J]. 上海交通大学学报(英文版), 2013, 18(5): 535-541. |
[9] | XU Li-qing (许丽卿), CHEN Hao* (陈 豪). Can the Polynomial Based Key Predistribution Scheme Be Used Many Times in One Wireless Sensor Network Key Establishment Protocol?[J]. 上海交通大学学报(英文版), 2013, 18(3): 376-384. |
[10] | QIAN Cheng* (钱成), ZHANG Meng (张萌), LUO Han-wen (罗汉文), LIU Wei (刘伟). Joint Tomlinson-Harashima Source and Linear Relay Precoder Design in Amplify-and-Forward Multiple-Input Multiple-Output Two-Way Relay Systems [J]. 上海交通大学学报(英文版), 2013, 18(2): 180-185. |
阅读次数 | ||||||||||||||||||||||||||||||||||||||||||||||||||
全文 221
|
|
|||||||||||||||||||||||||||||||||||||||||||||||||
摘要 692
|
|
|||||||||||||||||||||||||||||||||||||||||||||||||