Title :
Beamforming strategy using adaptive beam patterns and power control for common control channel in hierarchical cell structure networks
Author :
You, Cheolwoo ; Jung, Young-Ho ; Cho, Sunghyun
Author_Institution :
Dept. of Inf. & Commun. Eng., Myongji Univ., Yongin, South Korea
Abstract :
Beamforming techniques have been successfully utilized for traffic channels in order to solve the interference problem. However, their use for control channels has not been sufficiently investigated. In this paper, a (semi-) centralized beamforming strategy that adaptively changes beam patterns and controls the total transmit power of cells is proposed for the performance enhancement of the common channel in hierarchical cell structure (HCS) networks. In addition, some examples of its practical implementation with low complexity are presented for two-tier HCS networks consisting of macro and pico cells. The performance of the proposed scheme has been evaluated through multi-cell system-level simulations under optimistic and pessimistic interference scenarios. The cumulative distribution function of user geometry or channel quality has been used as a performance metric since in the case of common control channel the number of outage users is more important than the sum rate. Simulation results confirm that the proposed scheme provides a significant gain compared to the random beamforming scheme as well as conventional systems that do not use the proposed algorithm. Finally, the proposed scheme can be applied simultaneously to several adjacent macro and pico cells even if it is designed primarily for the pico cell within macro cells.
Keywords :
array signal processing; higher order statistics; picocellular radio; power control; radiofrequency interference; telecommunication control; telecommunication traffic; wireless channels; adaptive beam patterns; centralized beamforming strategy; channel quality; common control channel; cumulative distribution function; hierarchical cell structure networks; macrocells; multicell system-level simulations; optimistic interference scenario; outage users; performance enhancement; pessimistic interference scenario; picocells; semicentralized beamforming strategy; total transmit power controls; traffic channels; two-tier HCS networks; user geometry; Antennas; Array signal processing; Geometry; Interference; Power control; Simulation; Vectors; Beamforming; beam pattern (BP); common control channel; hierarchical cell structure (HCS); power control;
Journal_Title :
Communications and Networks, Journal of
DOI :
10.1109/JCN.2011.6157451