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http://dx.doi.org/10.3745/KIPSTA.2008.15-A.5.249

Distributed Contents Delivery Network based on Home gateway for a Sustainable Service  

Kim, Myung-Won (숭실대학교 정보통신전자공학부)
Yoon, Young-Hyo (숭실대학교 정보통신전자공학부)
Ko, Joong-Sik (숭실대학교 정보통신전자공학부)
Kwak, Hu-Keun (숭실대학교 정보통신전자공학부)
Chung, Kyu-Sik (숭실대학교 정보통신전자공학부)
Abstract
DCDN(Distributed Contents Delivery Network) as known the next generation of CDN is to exploit the resource of client PCs based on P2P technology to provide low cost, high scalability and high speed services when contents are delivered. This DCDN has two problems. One is that DCDN can't provide a sustainable service because client PCs are on/off irregularly and their on times tend to focus on specific time zone, and the other is that client PCs can not be accessed outside in DCDN if they are behind NAT or Firewall. In this paper, we present a distributed contents delivery network based on home gateway for a sustainable service. If home gateway is used in DCDN instead of client PC, it can solve the two existing problems of DCDN. That is, home gateway can provide a sustainable service because it is on during all day and it is not behind NAT and Firewall. The proposed method is implemented with ASUS WL-500GP, a wired/wireless router. Experimental results show the effectiveness of the proposed method compared to the existing method of DCDN.
Keywords
Distributed Contents Delivery Network; CDN; Home Gateway; A Wired/Wireless Router;
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  • Reference
1 G. Pierre, M. van Steen, “Globule: a collaborative content delivery network”, IEEE Communications Magazine, Vol.44, pp.127-133, 2006   DOI   ScienceOn
2 Mengkun Yang, Zongming Fei, “A model for replica placement in content distribution networks for multimedia applications”, IEEE International Conference on communication, Vol.1, pp.557-561, 2003   DOI
3 강석오, “CDN(Content Delivery Network)”, NETWORK TIMES, 2004-07-07
4 OpenWRT, http://www.openwrt.org/
5 OpenWRT, http://www.dd-wrt.de/
6 황희선, 김태형, “P2P 기반 CDN 시스템에서 네트워크 토폴로지와 전송 성능과의 관계 분석”, 한국정보과학회 봄 학술발표논문집, pp.397-399, 2003.   과학기술학회마을
7 Guomin Zhang, Changyou Xing, Ming Chen, “A Distributed Multimedia CDN Model with P2P Architecture”, ISCIT'06, pp.152-156, 2006   DOI
8 M. Tran, W. Tavanapong, “Peers-assisted dynamic content distribution networks”, The IEEE Conference on Local Computer Networks, pp.15-17, 2005   DOI
9 Mulerikkal, Jaison Paul; Khalil, Ibrahim, “An Architecture for Distributed Content Delivery Network”, IEEE International Conference, pp.359-364, 2007   DOI
10 A. Vakali, G. Pallis, “Content delivery networks: status and trends”, Internet Computing IEEE, Vol.7, pp.68-74, 2003   DOI   ScienceOn
11 Rajkumar Buyya, A.M.K. Pathan, J. Broberg, Z. Tari, “A Case for Peering of Content Delivery Networks”, Distributed Systems Online IEEE, Vol.7, pp.1-5, 2006   DOI   ScienceOn
12 김지용, “조직적 인터넷망 인프라를 활용한 P2P 기반 CDN 서비스 방법”, 대한민국 특허청, No.10-0748030-0000, 2007
13 Jung-ll Namgung, Soo-Young Shin, Soo-Hyun Park, Lee-Sub Lee, Dongwon Jeong, “Self-organizing P2P overlay network applying dynamic landmark mechanism for contents delivery network”, SERA'05, 2005   DOI
14 최승락, 양철웅, 이중식, “CDN의 핵심 구성 기술들과 경향”, 한국정보과학회지, 2002년 9월호   과학기술학회마을
15 Fon, http://www.fon.com
16 이상철, “가전기기 보급률 및 가정용 소비행태조사”, 한국 전력 거래소, 2006-12
17 “인터넷 정보이용 실태조사 결과”, 한국정보통신부, 한국정보통신윤리위원회, 2005
18 K. Hosanagar, R. Krishnan, M. Smith, J. Chuang, “Optimal pricing of content delivery network (CDN) services”, Proceedings of the 37th Annual Hawaii International Conference on System Science, pp.10, 2004   DOI
19 C. D. Cranor, M. Green, C. Kalmanek, D. Shur, S. Sibal, J. E. Van der Merwe, Sreenan, “Enhanced streaming services in a content distribution network”, Internet Computing, IEEE, Vol.5, pp.66-75, 2001   DOI   ScienceOn
20 B. Molina, V. Ruiz, I. Alonso, C.E. Palau, J.C. Guerri, M. Esteve, “A closer look at a content delivery network implementation”, Electrotechnical Conference on IEEE Mediterranean, Vol.2, pp.685-688, 2004