Title :
Uplink capacity and interference avoidance for two-tier femtocell networks
Author :
Chandrasekhar, Vikram ; Andrews, Jeffrey G.
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Texas at Austin, Austin, TX, USA
fDate :
7/1/2009 12:00:00 AM
Abstract :
Two-tier femtocell networks- comprising a conventional cellular network plus embedded femtocell hotspots- offer an economically viable solution to achieving high cellular user capacity and improved coverage. With universal frequency reuse and DS-CDMA transmission however, the ensuing cross-tier interference causes unacceptable outage probability. This paper develops an uplink capacity analysis and interference avoidance strategy in such a two-tier CDMA network. We evaluate a network-wide area spectral efficiency metric called the operating contour (OC) defined as the feasible combinations of the average number of active macrocell users and femtocell base stations (BS) per cell-site that satisfy a target outage constraint. The capacity analysis provides an accurate characterization of the uplink outage probability, accounting for power control, path loss and shadowing effects. Considering worst case interference at a corner femtocell, results reveal that interference avoidance through a time-hopped CDMA physical layer and sectorized antennas allows about a 7x higher femtocell density, relative to a split spectrum two-tier network with omnidirectional femtocell antennas. A femtocell exclusion region and a tier selection based handoff policy offers modest improvements in the OCs. These results provide guidelines for the design of robust shared spectrum two-tier networks.
Keywords :
cellular radio; code division multiple access; spread spectrum communication; telecommunication links; DS-CDMA transmission; active macrocell users; cellular network; cellular user capacity; cross-tier interference; embedded femtocell hotspots; femtocell density; handoff policy; interference avoidance; network wide area spectral efficiency metric; omnidirectional femtocell antenna; sectorized antenna; spectrum two-tier networks; tier selection; time-hopped CDMA physical layer; two-tier CDMA network; two-tier femtocell network; universal frequency reuse; uplink capacity analysis; uplink outage probability; Base stations; Capacity planning; Cellular networks; Femtocell networks; Frequency; Interference constraints; Land mobile radio cellular systems; Macrocell networks; Multiaccess communication; Power generation economics; Operating contours, code division multiaccess, macrocell, femtocell, cellular, uplink capacity, outage probability.;
Journal_Title :
Wireless Communications, IEEE Transactions on
DOI :
10.1109/TWC.2009.070475