Title :
Improving Throughput by Multi-Cell Coordinated Vertical Plane Beam Control with Pre-Coding
Author :
Hoshino, Kenji ; Fujii, Teruya
Author_Institution :
Wireless Syst. Res. Center, SOFTBANK MOBILE Corp., Tokyo, Japan
Abstract :
Cellular mobile communication systems reuse the same frequency channel in geographically distant areas to improve the spectrum efficiency. However, co-channel interference among cells remains a critical issue. Mitigating co-channel interference leads to a further improvement in spectrum efficiency. One technique for mitigating co-channel interference is antenna beam tilting, which controls the vertical plane beam of base station antennas. In cellular mobile communication systems, antenna beam tilting is generally used by setting fixed beams at each base station. If the vertical plane beam pattern is changed dynamically for each mobile station, it is possible to significantly improve the SINR (Signal- to-Interference plus Noise Ratio), which drastically improves the spectrum efficiency. We propose here a vertical plane beam control method that uses pre-coding; the vertical plane beam pattern for each mobile station is easily set by controlling the phase of the baseband signal. The proposed method can be easily implemented with little or no modification of the antenna configuration at the base station. This system is effective for improving not only cell edge capacity but also overall cell capacity at the same time. A computer simulation shows that the spectrum efficiency of the proposed system is approximately twice that of conventional antenna beam tilting.
Keywords :
antenna radiation patterns; cellular radio; channel allocation; cochannel interference; frequency allocation; interference suppression; phase control; precoding; telecommunication control; antenna beam tilting; antenna configuration; base station antennas; baseband signal phase control; cell edge capacity; cellular mobile communication systems; cochannel interference mitigation; computer simulation; frequency channel reuse; mobile station; multicell-coordinated vertical plane beam control; precoding; signal-to-interference plus noise ratio; spectrum efficiency; vertical plane beam pattern; Base stations; Distributed control; Interference; Mobile antennas; Mobile communication; Throughput;
Conference_Titel :
Vehicular Technology Conference (VTC Spring), 2012 IEEE 75th
Conference_Location :
Yokohama
Print_ISBN :
978-1-4673-0989-9
Electronic_ISBN :
1550-2252
DOI :
10.1109/VETECS.2012.6240189