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Published in: Wireless Networks 4/2018

27-10-2016

Gateway load balancing using multiple QoS parameters in a hybrid MANET

Authors: Rashmi Kushwah, S. Tapaswi, Ajay Kumar, K. K. Pattanaik, S. Yousef, M. Cole

Published in: Wireless Networks | Issue 4/2018

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Abstract

A Mobile ad hoc network (MANET) is a self configurable wireless network in which mobile nodes communicate with each other in a multihop fashion without any pre-installed infrastructure. A MANET can be considered to be a standalone network. To enhance the connectivity of a MANET it can be connected to the fixed network, thus forming a heterogeneous network. The integration of MANET and the Internet is called a hybrid MANET which is facilitated by special nodes called Internet gateway nodes. Load balancing among gateways is a challenging task when a MANET is connected to Internet. Gateway nodes with higher loads will lead to disconnected networks and depletes the node’s resources which include their batteries, memory and bandwidth quickly. Gateway selection based on the shortest path may increase traffic concentration on one particular gateway which leads to congestion and increases delay in the network. In this paper a QoS based load balancing mechanism has been proposed among multiple gateway nodes that provide communication between mobile nodes and fixed nodes in the Internet to select lightly loaded gateways so that more packets will be delivered to the fixed host in the Internet. The proposed QoS based scheme selects four QoS parameters that are (1) connecting degree, (2) interface queue length, (3) routing table entries and (4) hop count. A weight based method is used to select the gateway which combines all four QoS metrics. Simulation results demonstrate that when compared with individual parameter, the average ETE delay, queue size and traffic load of gateway generated by proposed algorithm is decreased by 17, 25 and 15 % respectively and when compared with existing schemes, the average ETE delay, queue size and traffic load of gateway is decreased by 25, 25 and 16 % respectively.

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Literature
1.
go back to reference Conti, M., & Giordano, S. (2014). Mobile ad hoc networking: Milestones, challenges, and new research directions. Communications Magazine, IEEE, 52(1), 85–96.CrossRef Conti, M., & Giordano, S. (2014). Mobile ad hoc networking: Milestones, challenges, and new research directions. Communications Magazine, IEEE, 52(1), 85–96.CrossRef
2.
go back to reference Conti, M., & Giordano, S. (2007). Multihop ad hoc networking: The theory. Communications Magazine, IEEE, 45(4), 78–86.CrossRef Conti, M., & Giordano, S. (2007). Multihop ad hoc networking: The theory. Communications Magazine, IEEE, 45(4), 78–86.CrossRef
3.
go back to reference Boukerche, A., Turgut, B., Aydin, N., Ahmad, M. Z., Boloni, L., & Turgut, D. (2011). Routing protocols in ad hoc networks: A survey. Computer Networks, 55(13), 3032–3080.CrossRef Boukerche, A., Turgut, B., Aydin, N., Ahmad, M. Z., Boloni, L., & Turgut, D. (2011). Routing protocols in ad hoc networks: A survey. Computer Networks, 55(13), 3032–3080.CrossRef
4.
go back to reference Attia, R., Rizk, R., & Ali, H. A. (2015). Internet connectivity for mobile ad hoc network: A survey based study. Wireless Networks, 21(7), 2369–2394.CrossRef Attia, R., Rizk, R., & Ali, H. A. (2015). Internet connectivity for mobile ad hoc network: A survey based study. Wireless Networks, 21(7), 2369–2394.CrossRef
5.
go back to reference Attia, R., Rizk, R., & Ali, H. A. (2015). Efficient internet access framework for mobile ad hoc networks. Wireless Personal Communications, 84(3), 1689–1722.CrossRef Attia, R., Rizk, R., & Ali, H. A. (2015). Efficient internet access framework for mobile ad hoc networks. Wireless Personal Communications, 84(3), 1689–1722.CrossRef
6.
go back to reference Rao, R. V. (2007). Decision making in the manufacturing environment: Using graph theory and fuzzy multiple attribute decision making methods. Berlin: Springer.MATH Rao, R. V. (2007). Decision making in the manufacturing environment: Using graph theory and fuzzy multiple attribute decision making methods. Berlin: Springer.MATH
7.
go back to reference Ruiz, P. M., Ros, F. J., & Gomez-Skarmeta, A. (2005). Internet connectivity for mobile ad hoc networks: Solutions and challenges. Communications Magazine, IEEE, 43(10), 118–125.CrossRef Ruiz, P. M., Ros, F. J., & Gomez-Skarmeta, A. (2005). Internet connectivity for mobile ad hoc networks: Solutions and challenges. Communications Magazine, IEEE, 43(10), 118–125.CrossRef
8.
go back to reference Park, B. N., Lee, W., Lee, C., & Shin, C. K. (2006). QoS-aware adaptive Internet gateway selection in ad hoc wireless Internet access networks. In 3rd International conference on broadband communications, networks and systems, 2006. BROADNETS 2006 (pp. 1–10). IEEE. Park, B. N., Lee, W., Lee, C., & Shin, C. K. (2006). QoS-aware adaptive Internet gateway selection in ad hoc wireless Internet access networks. In 3rd International conference on broadband communications, networks and systems, 2006. BROADNETS 2006 (pp. 1–10). IEEE.
9.
go back to reference Zaman, R. U., Khan, K. U. R., & Reddy, A. V. (2010). Gateway load balancing in integrated internet-MANET using WLB-AODV. In Proceedings of the international conference and workshop on emerging trends in technology (pp. 411–416). ACM. Zaman, R. U., Khan, K. U. R., & Reddy, A. V. (2010). Gateway load balancing in integrated internet-MANET using WLB-AODV. In Proceedings of the international conference and workshop on emerging trends in technology (pp. 411–416). ACM.
10.
go back to reference Bouk, S. H., Sasase, I., Ahmed, S. H., & Javaid, N. (2012). Gateway discovery algorithm based on multiple QoS path parameters between mobile node and gateway node. Journal of Communications and Networks, 14(4), 434–442.CrossRef Bouk, S. H., Sasase, I., Ahmed, S. H., & Javaid, N. (2012). Gateway discovery algorithm based on multiple QoS path parameters between mobile node and gateway node. Journal of Communications and Networks, 14(4), 434–442.CrossRef
11.
go back to reference Wu, M., Seah, W. K., & Wong, L. W. (2005). A link-connectivity-prediction-based location-aided routing protocol for hybrid wired-wireless networks. ICMU: Proc. Wu, M., Seah, W. K., & Wong, L. W. (2005). A link-connectivity-prediction-based location-aided routing protocol for hybrid wired-wireless networks. ICMU: Proc.
12.
go back to reference Toh, C. K., Le, A. N., & Cho, Y. Z. (2009). Load balanced routing protocols for ad hoc mobile wireless networks. Communications Magazine, IEEE, 47(8), 78–84.CrossRef Toh, C. K., Le, A. N., & Cho, Y. Z. (2009). Load balanced routing protocols for ad hoc mobile wireless networks. Communications Magazine, IEEE, 47(8), 78–84.CrossRef
13.
go back to reference Le-Trung, Q., Engelstad, P. E., Skeie, T., & Taherkordi, A. (2008). Load-balance of intra/inter-MANET traffic over multiple internet gateways. In Proceedings of the 6th international conference on advances in mobile computing and multimedia (pp. 50–57). ACM. Le-Trung, Q., Engelstad, P. E., Skeie, T., & Taherkordi, A. (2008). Load-balance of intra/inter-MANET traffic over multiple internet gateways. In Proceedings of the 6th international conference on advances in mobile computing and multimedia (pp. 50–57). ACM.
14.
go back to reference Domingo, M. C., & Prior, R. (2007). An adaptive gateway discovery algorithm to support QoS when providing Internet access to mobile ad hoc networks. Journal of networks, 2(2), 33–44.CrossRef Domingo, M. C., & Prior, R. (2007). An adaptive gateway discovery algorithm to support QoS when providing Internet access to mobile ad hoc networks. Journal of networks, 2(2), 33–44.CrossRef
15.
go back to reference Ding, S. (2009). Mobile IP handoffs among multiple internet gateways in mobile ad hoc networks. Communications, IET, 3(5), 752–763.CrossRef Ding, S. (2009). Mobile IP handoffs among multiple internet gateways in mobile ad hoc networks. Communications, IET, 3(5), 752–763.CrossRef
16.
go back to reference Perkins, C. E. (2002). IP Mobility Support, IETF RFC 3311. Perkins, C. E. (2002). IP Mobility Support, IETF RFC 3311.
Metadata
Title
Gateway load balancing using multiple QoS parameters in a hybrid MANET
Authors
Rashmi Kushwah
S. Tapaswi
Ajay Kumar
K. K. Pattanaik
S. Yousef
M. Cole
Publication date
27-10-2016
Publisher
Springer US
Published in
Wireless Networks / Issue 4/2018
Print ISSN: 1022-0038
Electronic ISSN: 1572-8196
DOI
https://doi.org/10.1007/s11276-016-1391-z

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