DocumentCode :
3603660
Title :
Distributed Caching for Data Dissemination in the Downlink of Heterogeneous Networks
Author :
Jun Li ; Youjia Chen ; Zihuai Lin ; Wen Chen ; Vucetic, Branka ; Hanzo, Lajos
Author_Institution :
Sch. of Electron. & Opt. Eng., Nanjing Univ. of Sci. & Technol., Nanjing, China
Volume :
63
Issue :
10
fYear :
2015
Firstpage :
3553
Lastpage :
3568
Abstract :
Heterogeneous cellular networks (HCNs) with embedded small cells are considered, where multiple mobile users wish to download network content of different popularity. By caching data into the small-cell base stations, we will design distributed caching optimization algorithms via belief propagation (BP) for minimizing the downloading latency. First, we derive the delay-minimization objective function and formulate an optimization problem. Then, we develop a framework for modeling the underlying HCN topology with the aid of a factor graph. Furthermore, a distributed BP algorithm is proposed based on the network´s factor graph. Next, we prove that a fixed point of convergence exists for our distributed BP algorithm. In order to reduce the complexity of the BP, we propose a heuristic BP algorithm. Furthermore, we evaluate the average downloading performance of our HCN for different numbers and locations of the base stations and mobile users, with the aid of stochastic geometry theory. By modeling the nodes distributions using a Poisson point process, we develop the expressions of the average factor graph degree distribution, as well as an upper bound of the outage probability for random caching schemes. We also improve the performance of random caching. Our simulations show that 1) the proposed distributed BP algorithm has a near-optimal delay performance, approaching that of the high-complexity exhaustive search method; 2) the modified BP offers a good delay performance at low communication complexity; 3) both the average degree distribution and the outage upper bound analysis relying on stochastic geometry match well with our Monte-Carlo simulations; and 4) the optimization based on the upper bound provides both a better outage and a better delay performance than the benchmarks.
Keywords :
Monte Carlo methods; cellular radio; graph theory; radio links; stochastic processes; telecommunication network topology; BP; HCN; HCN topology; Monte-Carlo simulations; Poisson point process; average factor graph degree distribution; base stations; belief propagation; caching data; data dissemination; delay minimization objective function; distributed BP algorithm; distributed caching optimization algorithms; downlink; download network content; downloading latency; embedded small cells; heterogeneous cellular networks; mobile users; multiple mobile users; outage probability; outage upper bound analysis; small cell base stations; stochastic geometry theory; Complexity theory; Delays; Interference; Mobile communication; Optimization; Signal to noise ratio; Upper bound; Heterogeneous cellular networks; Wireless caching; belief propagation; heterogeneous cellular networks; stochastic geometry;
fLanguage :
English
Journal_Title :
Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
0090-6778
Type :
jour
DOI :
10.1109/TCOMM.2015.2455500
Filename :
7155502
Link To Document :
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