Modeling and analysis for cache-enabled networks with dynamic traffic

B Xia, C Yang, T Cao - IEEE Communications Letters, 2016 - ieeexplore.ieee.org
IEEE Communications Letters, 2016ieeexplore.ieee.org
Instead of assuming fully loaded cells in the analysis on cache-enabled networks with tools
of stochastic geometry, we focus on the dynamic traffic in this letter. With modeling traffic
dynamics of request arrivals and departures, probabilities of full-, free-, and modest-load
cells in the large-scale cache-enabled network are elaborated based on the traffic queue
state. Moreover, we propose to exploit the packets cached at cache-enabled users as side
information to cancel the incoming interference. Then, the packet loss rates for both the …
Instead of assuming fully loaded cells in the analysis on cache-enabled networks with tools of stochastic geometry, we focus on the dynamic traffic in this letter. With modeling traffic dynamics of request arrivals and departures, probabilities of full-, free-, and modest-load cells in the large-scale cache-enabled network are elaborated based on the traffic queue state. Moreover, we propose to exploit the packets cached at cache-enabled users as side information to cancel the incoming interference. Then, the packet loss rates for both the cache-enabled and cache-untenable users are investigated. The simulation results verify our analysis.
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