DocumentCode
2585744
Title
Scalable Blind Search and Broadcasting in Peer-to-Peer Networks
Author
Vishnevsky, Vladimir ; Safonov, Alexander ; Yakimov, Mikhail ; Shim, Eunsoo ; Gelman, Alexander D.
Author_Institution
Inst. for Inf. Transmission Problems, Russian Acad. of Sci., Moscow
fYear
2006
fDate
6-8 Sept. 2006
Firstpage
259
Lastpage
266
Abstract
Typical blind search algorithms in P2P networks generate a significant amount of duplicate query messages to increase the success rate. We present a framework, named recursive partitioning search (RPS), for blind search over structured peer-to-peer (P2P) networks, by which the query message duplication can be avoided. Two realizations of the framework for Chord and Pastry are presented. With simulation model, we compare success rate, lookup delay and overlay network load of RPS and various well-known blind search algorithms, and show RPS is the superior blind search algorithm running over a DHT. The algorithm guarantees that with high probability the lookup delay to visit every peer is of O(log N) hops, comparable to the delay of the exact match search over the DHTs. With RPS, every node in the overlay network is visited not more than once by design. These characteristics qualify the recursive partitioning search over DHT as an efficient broadcasting algorithm. We investigate RPS scalability and propose the way to choose an appropriate time-to-live (TTL) parameter value to maintain the balance between high success rate and reasonable network load
Keywords
computational complexity; peer-to-peer computing; search problems; Chord; Pastry; broadcasting algorithm; peer-to-peer networks; query message duplication; recursive partitioning search; scalable blind search; Broadcasting; Character generation; Delay; Internet telephony; Laboratories; Network topology; Partitioning algorithms; Peer to peer computing; Routing; Scalability;
fLanguage
English
Publisher
ieee
Conference_Titel
Peer-to-Peer Computing, 2006. P2P 2006. Sixth IEEE International Conference on
Conference_Location
Cambridge
Print_ISBN
0-7695-2679-9
Type
conf
DOI
10.1109/P2P.2006.34
Filename
1698621
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