Improved heuristics for multicast routing in wireless mesh networks
Multicast is a communication technique that allows a source to transmit data to a set of recipients in an efficient manner. Therefore, the primary objective of a multicast routing protocol would be to minimize number of transmissions to conserve bandwidth. The problem of computing multicast trees wi...
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| Vydáno v: | Wireless networks Ročník 19; číslo 8; s. 1829 - 1837 |
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| Hlavní autoři: | , |
| Médium: | Journal Article |
| Jazyk: | angličtina |
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Springer US
01.11.2013
Springer Springer Nature B.V |
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| ISSN: | 1022-0038, 1572-8196 |
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| Abstract | Multicast is a communication technique that allows a source to transmit data to a set of recipients in an efficient manner. Therefore, the primary objective of a multicast routing protocol would be to minimize number of transmissions to conserve bandwidth. The problem of computing multicast trees with minimal bandwidth consumption is similar to Steiner tree problem and has shown to be NP-complete. So, heuristic based algorithms are suitable to approximate such bandwidth optimal trees. This paper proposes a multicast routing protocol based on minimum number of transmission trees using an heuristic approach. The simulation results show that the proposed algorithm offers better performance over existing protocols, even in the worst-case scenario when the set of multicast receivers are sparsely distributed across the network. |
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| AbstractList | Multicast is a communication technique that allows a source to transmit data to a set of recipients in an efficient manner. Therefore, the primary objective of a multicast routing protocol would be to minimize number of transmissions to conserve bandwidth. The problem of computing multicast trees with minimal bandwidth consumption is similar to Steiner tree problem and has shown to be NP-complete. So, heuristic based algorithms are suitable to approximate such bandwidth optimal trees. This paper proposes a multicast routing protocol based on minimum number of transmission trees using an heuristic approach. The simulation results show that the proposed algorithm offers better performance over existing protocols, even in the worst-case scenario when the set of multicast receivers are sparsely distributed across the network. Multicast is a communication technique that allows a source to transmit data to a set of recipients in an efficient manner. Therefore, the primary objective of a multicast routing protocol would be to minimize number of transmissions to conserve bandwidth. The problem of computing multicast trees with minimal bandwidth consumption is similar to Steiner tree problem and has shown to be NP-complete. So, heuristic based algorithms are suitable to approximate such bandwidth optimal trees. This paper proposes a multicast routing protocol based on minimum number of transmission trees using an heuristic approach. The simulation results show that the proposed algorithm offers better performance over existing protocols, even in the worst-case scenario when the set of multicast receivers are sparsely distributed across the network.[PUBLICATION ABSTRACT] |
| Author | Matam, Rakesh Tripathy, Somanath |
| Author_xml | – sequence: 1 givenname: Rakesh surname: Matam fullname: Matam, Rakesh organization: Department of Computer Science and Engineering, Indian Institute of Technology Patna – sequence: 2 givenname: Somanath surname: Tripathy fullname: Tripathy, Somanath email: som@iitp.ac.in organization: Department of Computer Science and Engineering, Indian Institute of Technology Patna |
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| CitedBy_id | crossref_primary_10_1155_2016_1563464 crossref_primary_10_1007_s11276_016_1426_5 crossref_primary_10_1016_j_comcom_2016_12_019 |
| Cites_doi | 10.1109/ISCC.2005.34 10.1007/BF01187035 10.1007/978-1-4615-5713-5 10.1145/2348543.2348599 10.1007/s11276-005-1766-z 10.1145/167954.166246 10.1023/A:1020756600187 10.1016/j.adhoc.2010.05.001 10.1016/j.comcom.2008.01.022 10.1007/BF00288961 10.1109/49.779921 10.1016/j.mcm.2010.10.008 10.1016/j.adhoc.2011.02.004 10.1016/j.comnet.2004.12.001 10.1109/TMC.2006.11 10.1201/9780203497289 10.1109/MWC.2007.4300987 |
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| Keywords | Multicast routing Heuristic based algorithms Steiner tree Wireless mesh network Tree(graph) Meshed network Worst case method Transmission protocol Routing Steiner tree problem Multicast Bandwidth Heuristic method NP complete problem Wireless network Routing protocols |
| Language | English |
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| PublicationSubtitle | The Journal of Mobile Communication, Computation and Information |
| PublicationTitle | Wireless networks |
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| References | Song, Y., Liu, L., Ma, H., & Vasilakos, A. V. (2012). Physarum optimization: A new heuristic algorithm to minimal exposure problem. In Proceedings of International conference on mobile computing and networking 2012, pp. 419–422. Ruiz, P. M., & Gomez-Skarmeta, A. F. (2005). Approximating optimal multicast trees in wireless multihop networks. In Proceedings of 10th IEEE symposium on computers and communications, pp. 686–691. Bae, S. J., & Ko, Y. B. (2010). Efficient layer-2 multicasting for IEEE 802.11s based wireless mesh networks. In Proceedings of international conference on ubiquitous and future networks, pp. 109–114. NandirajuN.NandirajuD.SanthanamL.WangB.HEJ.AgrawalD. P.Wireless mesh network: Current challenges and future directions of web-in-the-skyIEEE Wireless Communications Magazine20071447989 Xu, J. (2006). Multicast in Wireless Mesh Networks. Master’s Thesis, Department of Computer Science and Engineering, York University, Toronto, Canada, October, 2006. Xie, R., & Jia, X. (2011). Minimum transmission data gathering trees for compressive sensing in wireless sensor networks. In Proceedings of international IEEE conference of global communications, pp. 1–5. WuB. Y.ChaoK. M.Spanning trees and optimization problems2004USAChapman and Hall/CRC Press10.1201/97802034972891072.90047 Moustafa, H., & Labiod, H. (2002). Source routing-based multicast protocol for mobile ad hoc networks. In Proceedings of 10th international conference on telecommunication systems modelling and analysis. Acharya, P. A. K., & Belding, E. M. (2011). MARS: Link-layer rate selection for multicast transmissions in wireless mesh networks, Ad Hoc Networks, 9(1), 48–60. ZelikovskyA.An 11/6-approximation algorithm for the network Steiner problemAlgorithmica199395463470121215910.1007/BF011870350768.68192 Zhao, X., Chou, C. T., Guo, J., & Jha, S. (2008). Probabilistically reliable on-demand multicast in wireless mesh networks. In Proceedings of international symposium on a world of wireless, pp. 1–9. ViswanathK.ObraczkaK.TsudikG.Exploring mesh and tree-based multicast routing protocols for MANETsIEEE Transactions on Mobile Computing200651284210.1109/TMC.2006.11 KouL.MarkowskyG.BermanL.A fast algorithm for Steiner treesActa Informatica19811514114559961310.1007/BF002889610445.68051 YenY. S.ChaoH. C.ChangR. S.VasilakosA. V.Flooding-limited and multi-constrained QoS multicast routing based on the genetic algorithm for MANETsMathematical and Computer Modelling20115311–122238225010.1016/j.mcm.2010.10.008 Ahmed, D. T. (2005). Multicasting in ad-hoc networks. Wireless Ad-hoc Networking, University of Ottawa, Canada 2005. Garcia-Luna-AcevesJ. J.MadrugaE. L.The core-assisted mesh protocolIEEE Journal on Selected Areas in Communications19991781380199410.1109/49.779921 Ballardie, A., Francis, P., & Crowcroft, J. (1993). Core based tree (CBT): An architecture for scalable inter-domain multicast routing. In Proceedings of ACM SIGCOMM, pp. 85–95, October 1993. CoutoD.AguayoD.BicketJ.MorrisR.A high-throughput path metric for multi-hop wireless routingWireless Networks—Selected Papers from ACM MobiCom2005114419434 AkyildizI. F.WangX.WangW.Wireless mesh networks: A surveyJournal of Computer Networks and ISDN Systems200547444548710.1016/j.comnet.2004.12.0011152.68319 LeeS. J.SuW.GerlaM.On-demand multicast routing protocol in multihop wireless mobile networksACM/Kluwer Mobile Networks and Applications200276441453 Ruiz, P. M., & Gomez-Skarmeta, A. F. (2005). Heuristic algorithms for minimum bandwidth consumption multicast routing in wireless mesh networks. In Proceedings of 4th international conference on ad hoc networks and wireless, pp. 258–270. ChengH.XiongN.VasilakosA. V.YangL. T.ChenG.ZhuangX.Nodes organization for channel assignment with topology preservation in multi-radio wireless mesh networksAd Hoc Networks201210576077310.1016/j.adhoc.2011.02.004 PaulS.Multicast on the internet and its applications1998New YorkKluwer Academic Publishers10.1007/978-1-4615-5713-5 Johnson D. B., & Maltz, D. A. (2004). The dynamic source routing protocol for mobile ad-hoc network (DSR). IETF internet draft. MANET Working Group, July, 2004. IEEE P802.11s/D5.0 Part 11: Wireless LAN Medium Access Control (MAC) and Physical Layer (PHY)specifications, Amendment 10: Mesh Networking, 2011. NguyenU. T.On multicast routing in wireless mesh networksJournal of Computer Communications20083171385139910.1016/j.comcom.2008.01.022 Gropl, C., Hougardy, S., Nierhoff, T., & Promel, H. J. (2001). Approximation algorithms for steiner tree problems in graphs. In X. Cheng & D. Z. Du (Eds.), Steiner trees in industry (pp. 235–279). New York: Kluwer Academic Publishers. 575_CR27 L. Kou (575_CR11) 1981; 15 I. F. Akyildiz (575_CR2) 2005; 47 J. J. Garcia-Luna-Aceves (575_CR19) 1999; 17 S. Paul (575_CR4) 1998 A. Zelikovsky (575_CR12) 1993; 9 575_CR13 H. Cheng (575_CR16) 2012; 10 575_CR14 575_CR5 575_CR17 575_CR18 575_CR3 575_CR8 575_CR7 K. Viswanath (575_CR6) 2006; 5 575_CR1 U. T. Nguyen (575_CR9) 2008; 31 B. Y. Wu (575_CR10) 2004 Y. S. Yen (575_CR15) 2011; 53 575_CR20 575_CR21 575_CR22 575_CR23 575_CR24 575_CR25 575_CR26 |
| References_xml | – reference: Ruiz, P. M., & Gomez-Skarmeta, A. F. (2005). Approximating optimal multicast trees in wireless multihop networks. In Proceedings of 10th IEEE symposium on computers and communications, pp. 686–691. – reference: IEEE P802.11s/D5.0 Part 11: Wireless LAN Medium Access Control (MAC) and Physical Layer (PHY)specifications, Amendment 10: Mesh Networking, 2011. – reference: Song, Y., Liu, L., Ma, H., & Vasilakos, A. V. (2012). Physarum optimization: A new heuristic algorithm to minimal exposure problem. In Proceedings of International conference on mobile computing and networking 2012, pp. 419–422. – reference: AkyildizI. F.WangX.WangW.Wireless mesh networks: A surveyJournal of Computer Networks and ISDN Systems200547444548710.1016/j.comnet.2004.12.0011152.68319 – reference: NandirajuN.NandirajuD.SanthanamL.WangB.HEJ.AgrawalD. P.Wireless mesh network: Current challenges and future directions of web-in-the-skyIEEE Wireless Communications Magazine20071447989 – reference: KouL.MarkowskyG.BermanL.A fast algorithm for Steiner treesActa Informatica19811514114559961310.1007/BF002889610445.68051 – reference: Zhao, X., Chou, C. T., Guo, J., & Jha, S. (2008). Probabilistically reliable on-demand multicast in wireless mesh networks. In Proceedings of international symposium on a world of wireless, pp. 1–9. – reference: Moustafa, H., & Labiod, H. (2002). Source routing-based multicast protocol for mobile ad hoc networks. In Proceedings of 10th international conference on telecommunication systems modelling and analysis. – reference: Garcia-Luna-AcevesJ. J.MadrugaE. L.The core-assisted mesh protocolIEEE Journal on Selected Areas in Communications19991781380199410.1109/49.779921 – reference: Bae, S. J., & Ko, Y. B. (2010). Efficient layer-2 multicasting for IEEE 802.11s based wireless mesh networks. In Proceedings of international conference on ubiquitous and future networks, pp. 109–114. – reference: ViswanathK.ObraczkaK.TsudikG.Exploring mesh and tree-based multicast routing protocols for MANETsIEEE Transactions on Mobile Computing200651284210.1109/TMC.2006.11 – reference: Xie, R., & Jia, X. (2011). Minimum transmission data gathering trees for compressive sensing in wireless sensor networks. In Proceedings of international IEEE conference of global communications, pp. 1–5. – reference: Johnson D. B., & Maltz, D. A. (2004). The dynamic source routing protocol for mobile ad-hoc network (DSR). IETF internet draft. MANET Working Group, July, 2004. – reference: CoutoD.AguayoD.BicketJ.MorrisR.A high-throughput path metric for multi-hop wireless routingWireless Networks—Selected Papers from ACM MobiCom2005114419434 – reference: WuB. Y.ChaoK. M.Spanning trees and optimization problems2004USAChapman and Hall/CRC Press10.1201/97802034972891072.90047 – reference: Xu, J. (2006). Multicast in Wireless Mesh Networks. Master’s Thesis, Department of Computer Science and Engineering, York University, Toronto, Canada, October, 2006. – reference: Gropl, C., Hougardy, S., Nierhoff, T., & Promel, H. J. (2001). Approximation algorithms for steiner tree problems in graphs. In X. Cheng & D. Z. Du (Eds.), Steiner trees in industry (pp. 235–279). New York: Kluwer Academic Publishers. – reference: Ballardie, A., Francis, P., & Crowcroft, J. (1993). Core based tree (CBT): An architecture for scalable inter-domain multicast routing. In Proceedings of ACM SIGCOMM, pp. 85–95, October 1993. – reference: Ahmed, D. T. (2005). Multicasting in ad-hoc networks. Wireless Ad-hoc Networking, University of Ottawa, Canada 2005. – reference: Acharya, P. A. K., & Belding, E. M. (2011). MARS: Link-layer rate selection for multicast transmissions in wireless mesh networks, Ad Hoc Networks, 9(1), 48–60. – reference: YenY. S.ChaoH. C.ChangR. S.VasilakosA. V.Flooding-limited and multi-constrained QoS multicast routing based on the genetic algorithm for MANETsMathematical and Computer Modelling20115311–122238225010.1016/j.mcm.2010.10.008 – reference: ChengH.XiongN.VasilakosA. V.YangL. T.ChenG.ZhuangX.Nodes organization for channel assignment with topology preservation in multi-radio wireless mesh networksAd Hoc Networks201210576077310.1016/j.adhoc.2011.02.004 – reference: Ruiz, P. M., & Gomez-Skarmeta, A. F. (2005). Heuristic algorithms for minimum bandwidth consumption multicast routing in wireless mesh networks. In Proceedings of 4th international conference on ad hoc networks and wireless, pp. 258–270. – reference: LeeS. J.SuW.GerlaM.On-demand multicast routing protocol in multihop wireless mobile networksACM/Kluwer Mobile Networks and Applications200276441453 – reference: ZelikovskyA.An 11/6-approximation algorithm for the network Steiner problemAlgorithmica199395463470121215910.1007/BF011870350768.68192 – reference: PaulS.Multicast on the internet and its applications1998New YorkKluwer Academic Publishers10.1007/978-1-4615-5713-5 – reference: NguyenU. 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