Title :
Efficacy of coverage radius-based power control scheme for interference mitigation in femtocells
Author :
Kpojime, Harold ; Safdar, Ghazanfar A.
Author_Institution :
Univ. of Bedfordshire, Luton, UK
Abstract :
A novel coverage radius-based downlink power control scheme to mitigate interference in densely deployed femtocells is presented. A femtocell access point (FAP) self-update algorithm is implemented, which determines the coverage radius of the femtocell with respect to its farthest served femtocell user equipment (FUE). Based on varying coverage radii, a max/min function is used to adjust the downlink transmit power value of a FAP. System-level simulations are performed to compare the performance of the presented scheme with the existing fixed coverage radius schemes. Even though the proposed scheme results in better cross-tier signal to interference plus noise ratio (SINR) values, due to a low co-tier SINR it is found that the efficacy of adaptive power control schemes based on the pilot power of a FAP is less significant if FUEs are located close to the neighbouring FAPs in densely deployed urban femtocells.
Keywords :
adaptive control; femtocellular radio; interference suppression; mobility management (mobile radio); power control; radio equipment; FAP self-update algorithm; FUE; SINR; adaptive power control scheme; coverage radii variation; coverage radius based downlink power control scheme; downlink transmit power value adjustment; femtocell user equipment; femtocells access point; femtocells deployment; interference mitigation; max-min function; signal to interference plus noise ratio; system level simulation;
Journal_Title :
Electronics Letters
DOI :
10.1049/el.2014.0557