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http://dx.doi.org/10.9717/kmms.2014.17.4.433

Facilitating Data Source Movement with Time-Division Access in Content-Centric Networking  

Priyono, Olivica (Department of Information and Communication System, HSV-TRC, Inje University)
Kong, In-Yeup (Kumoh National Institute of Technology)
Hwang, Won-Joo (Department of Information and Communication System, HSV-TRC, Inje University)
Publication Information
Abstract
Wireless communication offers the flexibility to the node movement at the spatial dimension more than the wire communication not only in IP architecture but also in Content-Centric Networking. Although it gives such advantage, the intra-domain movement of a node especially the data source node affects the communication to the access point node which in the end affects the acceptance ratio of the client node that requests the data packets from the data source node. In this paper, we use time-division access method to maintain the acceptance ratio of the client node as the effect of the intra-domain data source node movement in Content-Centric Networking. The simulation result shows that the acceptance ratio of the client node can be maintained using the time-division access method as long as the interval access time is less than the coherence time.
Keywords
Content-Centric Networking; intra-domain data source movement; Doppler effect;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
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1 O. Priyono and W. Hwang, "The Impacts of Node Movement for Package Acceptance Ability of Client Node in Content-Centric Networking," Proceeding of KMMS Fall Conference, pp. 288, 2013.
2 G.L. Stuber, Principles of Mobile Communication 2nd edition, Kluwer Academic Publishers, Massachusetts, 2003.
3 S. Haykin and M. Moher, Modern Wireless Communications, Pearson Prentice Hall, New Jersey, 2005.
4 D. Tse and P. Viswanath, Fundamentals of Wireless Communication, Cambridge University Press, New York, 2005.
5 A. Kumar, D. Manjunath, and J. Kuri, Wireless Networking, Morgan Kaufmann Publishers, Massachusetts, 2008.
6 The Impact of mobility, https://www.cs.purdue.edu/homes/park/cs422-datalink_wireless-2-11f.pdf, 2014.
7 G. Tyson, N. Sastry, I. Rimac, R. Cuevas, and A. Mauthe, "A Survey of Mobility in Information-Centric Networks: Challenges and Research Directions," Proceeding of ACM Workshop on Emerging Name-Oriented Mobile Networking Design, pp. 1-6, 2012.
8 D. Kim, J. Kim, Y. Kim, H. Yoon, and I. Yeom, "Mobility Support in Content Centric Networks," Proceeding of Workshop on Information-centric Networking, pp. 13-18, 2012.
9 D. Kim, "Content Centric Networking Naming Scheme for Efficient Data Sharing", Journal of Korea Multimedia Society, Vol. 15, No. 9, pp. 1126-1132, 2012.   과학기술학회마을   DOI   ScienceOn
10 A. Ghodsi, T. Koponen, B. Raghavan, S. Shenker, A. Singla, and J. Wilcox, "Information-Centric Networking: Seeing the Forest for the Trees," Proceeding of ACM SIGCOMM Workshop on Hot Topics in Networks, pp. 1-6, 2011.
11 O. Priyono, G.O. Yoon, and W. Hwang, "Early Mobility Notification in Content Centric Network using SIP," Proceeding of International Conference on Multimedia Information Technology and Applications, pp. 98-101, 2013.
12 A. Umar, Mobile Computing and Wireless Communications, NGE Solutions INC., Pennsylvania, 2004.
13 J. Lee, S. Cho, and D. Kim, "Device Mobility Management in Content-Centric Network," IEEE Communication Magazine, Vol. 50, Issue 12, pp. 28-34, 2012.
14 A. Paulus, E. Setijadi, and G. Hendrantoro, "Analisis Efek Doppler Pada Sistem Komunikasi ITS-SAT," Journal Teknik Pomits, Vol. 2, No. 2, pp. 223-228, 2013.
15 V. Jacobson, D.K. Smetters, J.D. Thornton, M. F. Plass, N.H. Briggs, and R.L. Braynard, "Networking Named Content," Proceeding of International Conference on Emerging Networking Experiments and Technologies, pp. 1-12, 2009.
16 B. Ahlgren, C. Dannewitz, C. Imbrenda, D. Kutscher, and B. Ohlman, "A Survey of Information-Centric Networking," IEEE Communications Magazine, Vol. 50, Issue 7, pp. 26-36, 2012.
17 Z. Lu and H. Yang, Unlocking the Power of OPNET Modeler, Cambridge University Press, New York, 2012.