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Ȩ Ȩ > ¿¬±¸¹®Çå > Çмú´ëȸ ÇÁ·Î½Ãµù > Çѱ¹Á¤º¸°úÇÐȸ Çмú´ëȸ > 2017³â ÄÄÇ»ÅÍÁ¾ÇÕÇмú´ëȸ

2017³â ÄÄÇ»ÅÍÁ¾ÇÕÇмú´ëȸ

Current Result Document : 5 / 5

ÇѱÛÁ¦¸ñ(Korean Title) Bayesian Stackelberg Game for Cache Allocation in Wireless Network with Incomplete Information
¿µ¹®Á¦¸ñ(English Title) Bayesian Stackelberg Game for Cache Allocation in Wireless Network with Incomplete Information
ÀúÀÚ(Author) Tra Huong Thi Le Choong Seon Hong  
¿ø¹®¼ö·Ïó(Citation) VOL 44 NO. 01 PP. 1142 ~ 1144 (2017. 06)
Çѱ۳»¿ë
(Korean Abstract)
Caching at base stations is a promising technique to meet the rapid surge of mobile traffic.
In this paper, we consider the cache allocation in the commercial caching system consists of one Infrastructure Provider (InP) and several Content Providers (CPs) under incomplete information circumstance. We model the problem based on Bayesian Stackelberg game in which InP is leader and CPs are followers. InP is assumed not have fully knowledge of CPs but knows the distribution of their weight parameters. Apply backward induction, we investigate and prove the existence of Stackelberg Equilibrium. Simulation result gives the comparison of the utility of InP in the complete and incomplete information scenarios.
¿µ¹®³»¿ë
(English Abstract)
Caching at base stations is a promising technique to meet the rapid surge of mobile traffic.
In this paper, we consider the cache allocation in the commercial caching system consists of one Infrastructure Provider (InP) and several Content Providers (CPs) under incomplete information circumstance. We model the problem based on Bayesian Stackelberg game in which InP is leader and CPs are followers. InP is assumed not have fully knowledge of CPs but knows the distribution of their weight parameters. Apply backward induction, we investigate and prove the existence of Stackelberg Equilibrium. Simulation result gives the comparison of the utility of InP in the complete and incomplete information scenarios.
Å°¿öµå(Keyword)
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