Title :
DT-ICAN: A Disruption-Tolerant Information-centric Ad-Hoc Network
Author :
Yu-Ting Yu ; Joy, Joshua ; Ruolin Fan ; You Lu ; Gerla, Mario ; Sanadidi, M.Y.
Author_Institution :
Comput. Sci. Dept., Univ. of California, Los Angeles, Los Angeles, CA, USA
Abstract :
Recently, Information-Centric Network (ICN) has been attracting much attention with its promising future as next-generation Internet architecture. While ICN is scalable and efficient in Internet, concerns are raised when ICN is deployed in frequently-disruptive vehicular ad-hoc networks. In this paper, we introduce DT-ICAN, which provides low-cost, bandwidth efficient network operations to conquer disruptions while preserving the context awareness of ICN. We implement DT-ICANSIM, an open-source simulator for DT-ICAN in Qual Net. We evaluate the trade-off between the performance gain in data availability and the overhead due to epidemic dissemination using real-world traces. Our results show that DT-ICAN improves the file retrieval rate by 45% compared to traditional multi-hop ICN in real-world scenario, proving the necessity of providing an opportunistic networking option when end-to-end connectivity is unavailable for VANET ICN.
Keywords :
fault tolerance; ubiquitous computing; vehicular ad hoc networks; DT-ICANSIM; Qual Net; VANET ICN; context awareness; disruption-tolerant information-centric ad-hoc network; end-to-end connectivity; epidemic dissemination; information-centric network; next-generation Internet architecture; opportunistic networking option; vehicular ad-hoc networks; Data communication; Delays; Mobile communication; Peer-to-peer computing; Relays; Vehicular ad hoc networks;
Conference_Titel :
Military Communications Conference (MILCOM), 2014 IEEE
Conference_Location :
Baltimore, MD
DOI :
10.1109/MILCOM.2014.174