Effect of Densification on Cellular Network Performance with Bounded Pathloss Model

June 06, 2016 Β· Declared Dead Β· πŸ› IEEE Communications Letters

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Authors Junyu Liu, Min Sheng, Lei Liu, Jiandong Li arXiv ID 1606.01599 Category cs.IT: Information Theory Citations 58 Venue IEEE Communications Letters Last Checked 5 months ago
Abstract
In this paper, we investigate how network densification influences the performance of downlink cellular network in terms of coverage probability (CP) and area spectral efficiency (ASE). Instead of the simplified unbounded pathloss model (UPM), we apply a more realistic bounded pathloss model (BPM) to model the decay of signal power caused by pathloss. It is shown that network densification indeed degrades CP when the base station (BS) density $Ξ»$ is sufficiently large. This is inconsistent with the result derived using UPM that CP is independent of $Ξ»$. Moreover, we shed light on the impact of ultra-dense deployment of BSs on the ASE scaling law. Specifically, it is proved that the cellular network ASE scales with rate $Ξ»e^{-ΞΊΞ»}$, i.e., first increases with $Ξ»$ and then diminishes to be zero as $Ξ»$ goes to infinity.
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