DocumentCode :
1724301
Title :
Hincent: Quick content distribution with priorities and high incentives
Author :
Kassa, Debessay Fesehaye ; Nahrstedt, Klara
Author_Institution :
Dept. of Comput. Sci., Univ. of Illinois at Urbana-Champaign, Urbana, IL, USA
fYear :
2013
Firstpage :
22
Lastpage :
30
Abstract :
Existing literature shows that Peer-to-Peer (P2P) content sharing can result in significant scalability gains in addition to assisting content distribution networks (CDNs). However, currently proposed CDN and P2P hybrid schemes do not provide accurate and efficient incentives to attract and maintain more peers. Besides, they do not use efficient prioritized congestion control and content source selection mechanisms to reduce content transfer time. We present Hincent, a quick content distribution protocol, which uses efficient prioritized rate allocation and content selection algorithms offering high incentives to participating peers. The fair incentives attract more peers which securely download and distribute contents. This in turn can benefit content providers and network operators. The Hincent rate allocations results in quicker content transfer time when compared with existing schemes. Hincent also employs effective rate enforcement mechanisms without requiring changes to the TCP/IP stack or to existing routers. Unlike existing centralized schemes such as YouTube, the design allows peers to have full control of (their) contents while sharing them with others using personal web servers. We have implemented Hincent in the NS2 simulator. Our detailed trace-based experiments show that Hincent outperforms existing schemes in terms of file download time and throughput by up to 30% on average. The results also demonstrate that Hincent obtains fair uplink prices for the uploaders and fair cost for the downloaders maintaining an overall system fairness. Besides, the results show the efficient Hincent enforcements of the prioritized allocations.
Keywords :
peer-to-peer computing; telecommunication congestion control; transport protocols; CDN; Hincent rate allocations; NS2 simulator; P2P content sharing; TCP/IP stack; content distribution networks; content distribution scalability gains; content providers; content selection algorithms; content source selection mechanisms; content transfer time reduction; downloaders; efficient prioritized congestion control; file download time; network operators; peer-to-peer content sharing; quick content distribution protocol; rate enforcement mechanisms; throughput; trace-based experiments; uplink prices; uploaders; Bandwidth; Computer integrated manufacturing; Downlink; Equations; Peer-to-peer computing; Servers; Uplink;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Consumer Communications and Networking Conference (CCNC), 2013 IEEE
Conference_Location :
Las Vegas, NV
Print_ISBN :
978-1-4673-3131-9
Type :
conf
DOI :
10.1109/CCNC.2013.6488420
Filename :
6488420
Link To Document :
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