dc.creatorJokela P.
dc.creatorMahkonen H.
dc.creatorRothenberg C.E.
dc.creatorOtt J.
dc.date2013
dc.date2015-06-25T19:13:48Z
dc.date2015-11-26T15:11:33Z
dc.date2015-06-25T19:13:48Z
dc.date2015-11-26T15:11:33Z
dc.date.accessioned2018-03-28T22:21:38Z
dc.date.available2018-03-28T22:21:38Z
dc.identifier9783901882555
dc.identifier2013 Ifip Networking Conference, Ifip Networking 2013. , v. , n. , p. - , 2013.
dc.identifier
dc.identifier
dc.identifierhttp://www.scopus.com/inward/record.url?eid=2-s2.0-84890829931&partnerID=40&md5=25a8a123ec25b2c976a0a2c3d7f55370
dc.identifierhttp://www.repositorio.unicamp.br/handle/REPOSIP/88952
dc.identifierhttp://repositorio.unicamp.br/jspui/handle/REPOSIP/88952
dc.identifier2-s2.0-84890829931
dc.identifier.urihttp://repositorioslatinoamericanos.uchile.cl/handle/2250/1258163
dc.descriptionRecent developments in networking technology have enabled massive media distribution in the Internet. However, bandwidth is still a limited resource and unicast-based media distribution from a single source to multiple receivers is inefficient. Multicasting provides traffic replication closer to the receivers allowing more efficient data distribution. IP multicast can be used for distributing data streams in IP networks, but the bandwidth saving comes at the cost of increased state in the network routers. The amount of state is directly dependent on the number of multicast groups in use. In this paper, we show how in-packet Bloom filter (iBF) multicast can be used to reduce multicast state in the network. The deployment can be done gradually: during the migration phase, a single AS can replace IP multicast with the proposed iBF-based solution without affecting the rest of the network, and take advantage of the reduced state in its core routers. © 2013 IFIP.
dc.description
dc.description
dc.description
dc.description
dc.descriptionIFIP Technical Committee on Communication Systems (TC6),IEEE Computer Society
dc.descriptionHei, X., Liu, Y., Ross, K., Iptv over p2p streaming networks: The mesh-pull approach (2008) Communications Magazine, 46 (2), pp. 86-92. , IEEE, February
dc.descriptionDeering, S.E., Cheriton, D.R., Multicast routing in datagram internetworks and extended LANs (1990) ACM Transactions on Computer Systems
dc.descriptionHosseini, M., Ahmed, D.T., Shirmohammadi, S., Georganas, N.D., A survey of application-layer multicast protocols (2007) IEEE Commun. Surveys and Tutiruals
dc.descriptionEU FP7 Project PURSUIT, , http://www.fp7-pursuit.eu, accessed: 12.1.2013
dc.descriptionJokela, P., Zahemszky, A., Rothenberg, C.E., Arianfar, S., Nikander, P., Lipsin: Line speed publish/subscribe inter-networking (2009) Proceedings of the ACM SIGCOMM 2009 Conference on Data Communication, Ser. SIGCOMM '09, pp. 195-206. , New York, NY, USA: ACM
dc.descriptionBloom, B.H., Space/time trade-offs in hash coding with allowable errors (1970) Commun. ACM, 13 (7), pp. 422-426. , , Jul
dc.descriptionWaitzman, D., Partridge, C., Deering, S., (1988) Distance Vector Multicast Routing Protocol, , RFC 1075 (Experimental), Internet Engineering Task Force, Nov
dc.descriptionMoy, J., (1994) Multicast Extensions to OSPF, , RFC 1584 (Historic), Internet Engineering Task Force, Mar
dc.descriptionFenner, B., Handley, M., Holbrook, H., Kouvelas, I., (2006) Protocol Independent Multicast - Sparse Mode (PIM-SM): Protocol Specification (Revised), , RFC 4601 (Proposed Standard), Internet Engineering Task Force, Aug., updated by RFCs 5059, 5796, 6226
dc.descriptionMeyer, D., (1998) Administratively Scoped IP Multicast, , RFC 2365 (Best Current Practice), Internet Engineering Task Force, Jul
dc.descriptionHolbrook, H., Cain, B., (2006) Source-Specific Multicast for IP, , RFC 4607 (Proposed Standard), Internet Engineering Task Force, Aug
dc.descriptionMeyer, D., Zhang, L., Fall, K., (2007) Report from the IAB Workshop on Routing and Addressing, , RFC 4984 (Informational), Internet Engineering Task Force, Sep
dc.descriptionFan, L., Cao, P., Almeida, J., Broder, A.Z., Summary cache: A scalable wide-area web cache sharing protocol (2000) IEEE/ACM Trans. Netw., 8 (3), pp. 281-293. , Jun
dc.descriptionZahemszky, A., Jokela, P., Sarela, M., Ruponen, S., Kempf, J., Nikander, P., MPSS: Multiprotocol stateless switching (2010) Global Internet Symposium 2010
dc.descriptionAl-Naday, M., Almeida, J., Guild, K., Reed, M., Design proposal of a photonic multicast bloom filter node (2012) Photonic Network Communications, 24, pp. 132-137
dc.descriptionFarrel, A., Vasseur, J.-P., Ash, J., (2006) A Path Computation Element (PCE)-Based Architecture, , RFC 4655 (Informational), Internet Engineering Task Force, Aug
dc.descriptionFree Internet Radio Stations, , http://shoutcast.com, accessed: 12.1.2013
dc.descriptionTarkoma, S., Lagerspetz, E., Theory and practice of bloom filters for distributed systems (2012) IEEE Communications Surveys and Tutorials, 14 (1)
dc.descriptionHenderson, T.R., Lacage, M., Riley, G.F., Dowell, C., Kopena, J.B., Network simulations with the ns-3 simulator (2008) SIGCOMM'08 Demos, , http://www.nsnam.org/releases/ns-3.1.tar.bz2, code available
dc.descriptionEU FP7 Project PSIRP, , http://www.psirp.org, accessed: 12.1.2013
dc.descriptionRocketfuel ISP Topology Data, , http://www.cs.washington.edu/research/networking/rocketfuel/maps/ weights-dist.tar.gz
dc.descriptionRothenberg, C.E., Macapuna, C., Verdi, F., Magalhes, M., Zahemszky, A., Data center networking with in-packet bloom filters (2010) SBRC 2010, , May
dc.descriptionRothenberg, C.E., Macapuna, C.A.B., Verdi, F.L., Magalhaes, M.F., Deletable bloom filter: A new member of the bloom family (2010) Comm. Letters., 14 (6), pp. 557-559. , Jun
dc.languageen
dc.publisher
dc.relation2013 IFIP Networking Conference, IFIP Networking 2013
dc.rightsfechado
dc.sourceScopus
dc.title(deployable) Reduction Of Multicast State With In-packet Bloom Filters
dc.typeActas de congresos


Este ítem pertenece a la siguiente institución