TY - JOUR
T1 - Area-based collaborative distributed cache system using consumer electronics mobile device
AU - Narimatsu, Hiromi
AU - Kasai, Hiroyuki
AU - Shinkuma, Ryoichi
N1 - Funding Information:
1This work is supported in part by the National Institute of information and Communications Technology (NICT), Japan, under early-concept Grants for Exploratory Research on New-generation network.
PY - 2011/5
Y1 - 2011/5
N2 - New communication services among nearby passing people are growing rapidly thanks to the advance of short-range wireless communication technologies and the widespread use of mobile devices that use them. Time-offset communication capability will engender a new service paradigm and promote new service emergence. This paper presents a proposal of a new distributed mobile cache system to cache data temporarily in a designated local area. The system is realized through collaborative consumer electronics mobile devices which use no infrastructure network. The system overview and its middleware on the mobile devices are explained. Furthermore, new relay data algorithms are proposed to provide lower-overhead communication and a more robust caching capability. Finally, results of simulation experiments underscore the effectiveness of the proposed control algorithm in terms of the communication cost and the length of the cache time.
AB - New communication services among nearby passing people are growing rapidly thanks to the advance of short-range wireless communication technologies and the widespread use of mobile devices that use them. Time-offset communication capability will engender a new service paradigm and promote new service emergence. This paper presents a proposal of a new distributed mobile cache system to cache data temporarily in a designated local area. The system is realized through collaborative consumer electronics mobile devices which use no infrastructure network. The system overview and its middleware on the mobile devices are explained. Furthermore, new relay data algorithms are proposed to provide lower-overhead communication and a more robust caching capability. Finally, results of simulation experiments underscore the effectiveness of the proposed control algorithm in terms of the communication cost and the length of the cache time.
KW - Collaborative distributed cache system
KW - Consumer electronics mobile device
KW - Short-range wireless communication
KW - WLAN
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U2 - 10.1109/TCE.2011.5955193
DO - 10.1109/TCE.2011.5955193
M3 - Article
AN - SCOPUS:79960909509
SN - 0098-3063
VL - 57
SP - 564
EP - 573
JO - IEEE Transactions on Consumer Electronics
JF - IEEE Transactions on Consumer Electronics
IS - 2
M1 - 5955193
ER -