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Published in: Wireless Personal Communications 1/2014

01-03-2014

A QoS Routing Protocol with Bandwidth Allocation in Multichannel Ad Hoc Networks

Authors: Jipeng Zhou, Liangwen Liu, Yuhui Deng, Shuqiang Huang

Published in: Wireless Personal Communications | Issue 1/2014

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Abstract

Mobile multimedia applications have recently generated much interest in mobile ad hoc networks (MANETs) supporting quality-of-service (QoS) communications. Multiple non-interfering channels are available in 802.11 and 802.15 based wireless networks. Capacity of such channels can be combined to achieve higher QoS performance than for single channel networks. The capacity of MANETs can be substantially increased by equipping each network node with multiple interfaces that can operate on multiple non-overlapping channels. However, new scheduling, channel assignment, and routing protocols are required to utilize the increased bandwidth in multichannel MANETs. In this paper, we propose an on-demand routing protocol M-QoS-AODV in multichannel MANETs that incorporates a distributed channel assignment scheme and routing discovery process to support multimedia communication and to satisfy QoS bandwidth requirement. The proposed channel assignment scheme can efficiently express the channel usage and interference information within a certain range, which reduces interference and enhances channel reuse rate. This cross-layer design approach can significantly improve the performance of multichannel MANETs over existing routing algorithms. Simulation results show that the proposed M-QoS-AODV protocol can effectively increase throughput and reduce delay, as compared to AODV and M-AODV-R protocols.

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Literature
1.
go back to reference Badis, H., & Agha, K. A. (2005). QOLSR: QoS routing for ad hoc wireless networks using OLSR. European Transactions on Telecommunications, 16(5), 427–442.CrossRef Badis, H., & Agha, K. A. (2005). QOLSR: QoS routing for ad hoc wireless networks using OLSR. European Transactions on Telecommunications, 16(5), 427–442.CrossRef
2.
go back to reference Chen, L., & Heinzelman, W. B. (2005). Qos-aware routing based on bandwidth estimation for ad hoc networks. IEEE Journal on Selected Areas in Communications, 23(3), 561–572.CrossRef Chen, L., & Heinzelman, W. B. (2005). Qos-aware routing based on bandwidth estimation for ad hoc networks. IEEE Journal on Selected Areas in Communications, 23(3), 561–572.CrossRef
3.
go back to reference Chiu, C. Y., Kuo, Y. L., Kuang, E. H., & Chen, G. H. (2008). Bandwidth-constrained routing problem in wireless ad hoc networks. IEEE Transactions on Parallel and Distributed Systems, 19(1), 4–14.CrossRef Chiu, C. Y., Kuo, Y. L., Kuang, E. H., & Chen, G. H. (2008). Bandwidth-constrained routing problem in wireless ad hoc networks. IEEE Transactions on Parallel and Distributed Systems, 19(1), 4–14.CrossRef
4.
go back to reference Gong, M. X., Midkiff, S. F., & Mao, S. (2009). On-demand routing and channel assigment in multi-channel mobile ad hoc networks. Ad Hoc Networks, 7, 63–78.CrossRef Gong, M. X., Midkiff, S. F., & Mao, S. (2009). On-demand routing and channel assigment in multi-channel mobile ad hoc networks. Ad Hoc Networks, 7, 63–78.CrossRef
5.
go back to reference Huang, R. S., Zhai, H. Q., Zhang, C., & Fang, Y. (2008). SAM-MAC: An efficient channel assignment scheme for multi-channel ad hoc networks. Ad Hoc Networks, 52, 1634–1646.MATH Huang, R. S., Zhai, H. Q., Zhang, C., & Fang, Y. (2008). SAM-MAC: An efficient channel assignment scheme for multi-channel ad hoc networks. Ad Hoc Networks, 52, 1634–1646.MATH
6.
go back to reference Kao, B. R., Tu, N. N., Hwang, I. S., & Lai, K. (2013). Auction-based bandwidth allocation in multi-hop wireless ad hoc networks. Wireless Personal Communcation, doi:10.1007/s1127-012-0842-7. Kao, B. R., Tu, N. N., Hwang, I. S., & Lai, K. (2013). Auction-based bandwidth allocation in multi-hop wireless ad hoc networks. Wireless Personal Communcation, doi:10.​1007/​s1127-012-0842-7.
7.
go back to reference Kajioka, S., Wakamiya, N., Satoh, H., et al. (2011). A QoS-aware rotuting mechanism for multi-channel multi-interface ad-hoc neworks. Ad Hoc Networks, 9, 911–927.CrossRef Kajioka, S., Wakamiya, N., Satoh, H., et al. (2011). A QoS-aware rotuting mechanism for multi-channel multi-interface ad-hoc neworks. Ad Hoc Networks, 9, 911–927.CrossRef
8.
go back to reference Kim, K. (2011). A distributed channel assignment control for QoS support in mobile ad hoc networks. Journal of Parallel and Distributed Computing, 71, 335–342.CrossRef Kim, K. (2011). A distributed channel assignment control for QoS support in mobile ad hoc networks. Journal of Parallel and Distributed Computing, 71, 335–342.CrossRef
9.
go back to reference Lee, S. J., Su, W., Hsu, J., Gerla, M., & Gagrodia, R. (2000). A performance comparison study of ad hoc wireless multicast protocols. Proceedings of the IEEE Infocom, 2, 565–574. Lee, S. J., Su, W., Hsu, J., Gerla, M., & Gagrodia, R. (2000). A performance comparison study of ad hoc wireless multicast protocols. Proceedings of the IEEE Infocom, 2, 565–574.
10.
go back to reference Lee, T., Qiao, C. M., Demirbas, M., & Xu, J. H. (2011). ABC-MC: A new multi-channel geographic forwarding scheme for wireless sensor networks. Ad Hoc Networks, 9, 699–712.CrossRef Lee, T., Qiao, C. M., Demirbas, M., & Xu, J. H. (2011). ABC-MC: A new multi-channel geographic forwarding scheme for wireless sensor networks. Ad Hoc Networks, 9, 699–712.CrossRef
11.
go back to reference Ma, X. L., Li, F. M., Hu, F., & Liu, X. H. (2012). A hybrid channel assignment strategy to QoS support of video-streaming over multi-channel ad hoc networks. The Journal of Systems and Software, 85, 300–308.CrossRef Ma, X. L., Li, F. M., Hu, F., & Liu, X. H. (2012). A hybrid channel assignment strategy to QoS support of video-streaming over multi-channel ad hoc networks. The Journal of Systems and Software, 85, 300–308.CrossRef
13.
go back to reference Raniwala, A., & Chiueh, T. (2004). Centralized channel assignment and routing algorithms for multi-channel wireless mesh networks. ACM Mobile Computing and Communication Review, 8(2), 50–65.CrossRef Raniwala, A., & Chiueh, T. (2004). Centralized channel assignment and routing algorithms for multi-channel wireless mesh networks. ACM Mobile Computing and Communication Review, 8(2), 50–65.CrossRef
14.
go back to reference Raniwala, A., & Chiueh, T. (2005). Architecture and algorithms for an IEEE 802.11-based multichannel wireless mesh network. In Proceedings of IEEE INFOCM, Miami, FL, (pp. 2223–2234). Raniwala, A., & Chiueh, T. (2005). Architecture and algorithms for an IEEE 802.11-based multichannel wireless mesh network. In Proceedings of IEEE INFOCM, Miami, FL, (pp. 2223–2234).
15.
go back to reference de Renesse, R., Ghassemia, M., Friderikos, V., Aghvami, A. H. (2004). QoS enbled routing in mobile ad hoc networks. In Proceedings of the 5th IEEE international conference on 3G mobile communication technologies, (pp. 678–682). de Renesse, R., Ghassemia, M., Friderikos, V., Aghvami, A. H. (2004). QoS enbled routing in mobile ad hoc networks. In Proceedings of the 5th IEEE international conference on 3G mobile communication technologies, (pp. 678–682).
16.
go back to reference Tseng, Y. C., Wu, S. L., Chao, C. M., & Sheu, J. P. (2006). An efficient MAC protocol for mulit-channel mobile ad hoc networks based on localtion information. International Journal of Communication Systems, 19, 887–896.CrossRef Tseng, Y. C., Wu, S. L., Chao, C. M., & Sheu, J. P. (2006). An efficient MAC protocol for mulit-channel mobile ad hoc networks based on localtion information. International Journal of Communication Systems, 19, 887–896.CrossRef
17.
go back to reference Wang, X., & Aceves, J. G. L. (2008). Distributed joint channel assignment, routing and scheduling for wireless mesh networks. Computer Communications, 31, 1436–1446.CrossRef Wang, X., & Aceves, J. G. L. (2008). Distributed joint channel assignment, routing and scheduling for wireless mesh networks. Computer Communications, 31, 1436–1446.CrossRef
18.
go back to reference Wang, X., & Aceves, J. G. L. (2009). Embracing interference in ad hoc networks using joint routing and scheduling with multiple packet reception. Ad Hoc Networks, 7, 460–471.CrossRef Wang, X., & Aceves, J. G. L. (2009). Embracing interference in ad hoc networks using joint routing and scheduling with multiple packet reception. Ad Hoc Networks, 7, 460–471.CrossRef
19.
go back to reference Wang, N. C., & Lee, C. Y. (2012). A multi-path QoS multicast routing protocol with slot assigmnment for mobile ad hoc networks. Information Science, 208, 1–13.CrossRefMathSciNet Wang, N. C., & Lee, C. Y. (2012). A multi-path QoS multicast routing protocol with slot assigmnment for mobile ad hoc networks. Information Science, 208, 1–13.CrossRefMathSciNet
20.
go back to reference Yang, Y., & Kravets, R. (2005). Contention-aware admission control for ad hoc networks. IEEE Transactions on Mobile Computing, 4(4), 363–377.CrossRef Yang, Y., & Kravets, R. (2005). Contention-aware admission control for ad hoc networks. IEEE Transactions on Mobile Computing, 4(4), 363–377.CrossRef
21.
go back to reference Zhu, H., & Chlamtac, I. (2006). Admission control and bandwidth reservation in multi-hop ad hoc networks. Computer Networks, 50(11), 1653–1674.CrossRefMATH Zhu, H., & Chlamtac, I. (2006). Admission control and bandwidth reservation in multi-hop ad hoc networks. Computer Networks, 50(11), 1653–1674.CrossRefMATH
22.
go back to reference Zhou, J., Peng, L., & Deng, Y. (2012). An on-demand routing protocol for improving channel use efficiency in multichannel ad hoc networks. Journal of Networks and Computer Applications, 35, 1604–1606. Zhou, J., Peng, L., & Deng, Y. (2012). An on-demand routing protocol for improving channel use efficiency in multichannel ad hoc networks. Journal of Networks and Computer Applications, 35, 1604–1606.
Metadata
Title
A QoS Routing Protocol with Bandwidth Allocation in Multichannel Ad Hoc Networks
Authors
Jipeng Zhou
Liangwen Liu
Yuhui Deng
Shuqiang Huang
Publication date
01-03-2014
Publisher
Springer US
Published in
Wireless Personal Communications / Issue 1/2014
Print ISSN: 0929-6212
Electronic ISSN: 1572-834X
DOI
https://doi.org/10.1007/s11277-013-1362-y

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