A Modified AODV to Cope with Marine Mobile Ad-Hoc Networks

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Abstract:

This Marine mobile ad-hoc network (MMANET) is a dynamic wireless network, and the random mobility of ship nodes and limited radio transmission range are the main challenges in the design of the robust routing algorithm. Dynamic Source Routing (DSR) and Ad hoc On-Demand Vector Routing (AODV) are typical on-demand protocols, but if there are some nodes moving with random fast velocity and limited transmission range in communication network, the network will be under an unstable link state and this situation may lead to large delay and packet loss. In this paper, a new scheme named Dynamic Link Self-healing mechanism on the basis of Mobility Quantization AODV (DLMQ-AODV) is proposed to solve the problem. Mobility quantization of node is resulting from relative velocity and distance, through computation of weighting, dimensionless etc. We take advantage of mobility quantization to establish dynamic link self-healing mechanism in order to improve the routing performance. The simulation results show that DLMQ-AODV has a better performance in comparison to DSR and AODV.

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Advanced Materials Research (Volumes 926-930)

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1865-1869

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May 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] D. Dudkowski and J. Hähner, An analytical study of the communication cost of data-centric storage in mobile ad hoc networks, Ad Hoc Networks, vol. 10, pp.356-372, 2012-05-01 (2012).

DOI: 10.1016/j.adhoc.2011.07.010

Google Scholar

[2] B. Ryu, J. Choi and S. Lee, Impact of node distance on selfish replica allocation in a mobile ad-hoc network, Ad Hoc Networks, vol. 11, pp.2187-2202, 2013-11-01 (2013).

DOI: 10.1016/j.adhoc.2013.05.001

Google Scholar

[3] L. D. Sharma and N. Roberts, Effects of Velocity on Performance of DYMO, AODV and DSR Routing Protocols in Mobile Ad-hoc Networks, Procedia Technology, vol. 4, pp.727-731, 2012-01-01 (2012).

DOI: 10.1016/j.protcy.2012.05.118

Google Scholar

[4] S. Liu, Y. Yang and W. Wang, Research of AODV Routing Protocol for Ad Hoc Networks1, AASRI Procedia, vol. 5, pp.21-31, 2013-01-01 (2013).

DOI: 10.1016/j.aasri.2013.10.054

Google Scholar

[5] M. Ayash, M. Mikki and Y. Kangbin, Improved AODV Routing Protocol to Cope with High Overhead in High Mobility MANETs, in Innovative Mobile and Internet Services in Ubiquitous Computing (IMIS), 2012 Sixth International Conference on, Palermo, 2012, pp.244-251.

DOI: 10.1109/imis.2012.44

Google Scholar

[6] L. Liu, L. Zhu, L. Lin, and Q. Wu, Improvement of AODV Routing Protocol with QoS Support in Wireless Mesh Networks, Physics Procedia, vol. 25, pp.1133-1140, 2012-01-01 (2012).

DOI: 10.1016/j.phpro.2012.03.210

Google Scholar

[7] Q. ZHANG, M. WU, Y. ZHEN, and C. SHANG, AODV routing overhead analysis based on link failure probability in MANET, The Journal of China Universities of Posts and Telecommunications, vol. 17, pp.109-115, 2010-10-01 (2010).

DOI: 10.1016/s1005-8885(09)60515-x

Google Scholar

[8] Z. Qiankun, X. Tingxue, Z. Hongqing, Y. Chunying, and L. Tingjun, A Mobile Ad Hoc Networks Algorithm Improved AODV Protocol, Procedia Engineering, vol. 23, pp.229-234, 2011-01-01 (2011).

DOI: 10.1016/j.proeng.2011.11.2494

Google Scholar

[9] M. Imani, B. Hassanabadi and M. Naderi, Refinement of AODV routing algorithm for wireless mesh networks (WMNs), in Electrical Engineering (ICEE), 2011 19th Iranian Conference on, Tehran, Iran, 2011, pp.1-6.

Google Scholar

[10] P. Nand and S. C. Sharma, Probability Based Improved Broadcasting for AODV Routing Protocol, Procedia Engineering, vol. 50, pp.222-231, 2012-01-01 (2012).

Google Scholar

[11] M. Hackl, R. Malservisi, U. Hugentobler, and Y. Jiang, Velocity covariance in the presence of anisotropic time correlated noise and transient events in GPS time series, Journal of Geodynamics, vol. 72, pp.36-45, 2013-12-01 (2013).

DOI: 10.1016/j.jog.2013.08.007

Google Scholar

[12] PAN Xin, ZENG Hao-yang, CHEN li, The Improvement of AODV based on Mobility, Communications Technologies, vol. 03 , pp.49-51, 2011-03.

Google Scholar