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Performance of coherent adaptive antenna array beamforming combined with MRC diversity techniques in W-CDMA reverse link

机译:W-CDMA反向链路中相干自适应天线阵列波束成形结合MRC分集技术的性能

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This paper presents coherent adaptive antenna array beamforming (CAAA-BF) combined with maximal ratio combining (MRC) diversity techniques (space diversity, SD, or polarization diversity, PD) and evaluates the interference suppression effect of these methods under multipath fading in the W-CDMA reverse link. Computer simulation results show that even when the number of active users is 150 (note that the capacity normalized by the processing gain, Pg, is 78%), the required transmit signal energy-per-bit-to-background-noise power spectrum density ratio (E/sub b//N/sub 0/) at the average block error rate (BLER) of 10/sup -2/ with CAAA-BF with 2-branch SD reception, i.e., 4 antennas per branch, is decreased by approximately 1.4 dB compared to that with CAAA-BF using 8 antennas. These results indicate that by combining CAAA-BF with diversity techniques, although the interference suppression effect is slightly decreased compared to that with CAAA-BF using the identical number of antennas in an interference-limited channel, due to the broadening beam width, there is a significant additional space diversity effect especially when the number of resolved paths is small.
机译:本文介绍了相干自适应天线阵列波束成形(CAAA-BF)结合最大比合并(MRC)分集技术(空间分集,SD或极化分集,PD),并评估了这些方法在W中多径衰落下的干扰抑制效果-CDMA反向链路。计算机仿真结果表明,即使活动用户数为150(注意,通过处理增益Pg归一化的容量为78%),每位对背景噪声功率频谱密度所需的发射信号能量带有2分支SD接收的CAAA-BF,即平均平均误块率(BLER)为10 / sup -2 /时的比率(E / sub b // N / sub 0 /)减小,即每个分支4个天线与使用8根天线的CAAA-BF相比,降低了约1.4 dB。这些结果表明,通过将CAAA-BF与分集技术相结合,尽管与在干扰受限信道中使用相同数量天线的CAAA-BF相比,干扰抑制效果略有降低,但由于波束宽度变宽,因此存在尤其是当解析路径的数量较少时,会产生明显的附加空间分集效应。

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