Title
Self-Organization Of Coverage Of Densely Deployed Wlans Considering Outermost Aps Without Generating Coverage Holes
Abstract
In densely deployed wireless local area network (WLAN) environments, the arbitrary deployment of WLAN access points (APs) can cause serious cell overlaps among APs. In such situations, the ability to realize adaptable coverage using transmission power control (TPC) is effective for improving the area spectral efficiency. Meanwhile, it should be guaranteed that no coverage holes occur and that connectivity between APs and wireless stations (STAs) is maintained. In this paper, the self organization of coverage domains of APs using TPC is proposed. The proposed technique reduces the incidence of coverage overlaps without generating area coverage holes. To detect coverage holes, STAs and/or APs are used as sensors that inform each AP of whether or not the points at which they exist are covered by the APs. However, there is a problem with this approach in that when the density of STAs is not sufficiently large, the occurrence of area coverage holes is inevitable because the points at which the sensors do not exist are not guaranteed to be covered by APs. This paper overcomes the problem by focusing APs that belong to network's outer boundary (boundary APs) and prohibiting the APs from operating at low transmission power levels, the idea being that the coverage domains of such APs always include the region covered by only those APs. The boundary APs are determined by performing Delaunay triangulation of the set of points at which all APs exist. Simulation results confirm the effectiveness of the proposed TPC scheme in terms of its ability to reduce the total overlap area while avoiding the occurrence of area coverage holes.
Year
DOI
Venue
2016
10.1587/transcom.2016SNP0020
IEICE TRANSACTIONS ON COMMUNICATIONS
Keywords
Field
DocType
coverage adaptation, IEEE 802.11 WLAN, transmission power control, area coverage hole, coverage boundary
Computer science,Self-organization,Computer network,Distributed computing
Journal
Volume
Issue
ISSN
E99B
9
0916-8516
Citations 
PageRank 
References 
1
0.35
8
Authors
6
Name
Order
Citations
PageRank
Shotaro Kamiya123.78
Keita Nagashima210.69
Koji Yamamoto313545.58
Takayuki Nishio410638.21
Masahiro Morikura518463.42
Tomoyuki Sugihara631.13