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Performance of a Digital Beamforming Concept in a GSM1800 Downlink: A Simulation Study

机译:GSM1800下行链路中数字波束成形概念的性能:仿真研究

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摘要

A smart antenna concept was studied in the context of a GSM 1800 downlink. In practice, it is not possible to estimate the actual downlink channel when using frequency division duplexing (FDD). Therefore, the current approach is based on uplink direction-of-arrival (DoA) estimation. The downlink beam is then directed to the DoA obtained from the uplink. The purpose was to study the dependence of downlink performance on the angular and delay distribution of the desired signal. The downlink beamforming was studied in this work using simulations with 2D channel models for different test environments. The probability of error in DoA estimation of the desired mobile station was evaluated in conjunction with DoA averaging. In addition, downlink BER performance was examined in a noise-limited situation and compared to the results of the corresponding uplink and a conventional 2-branch GSM receiver. With a 1*8-element antenna configuration, downlink performance degradation compared to the corresponding uplink case was approximately 1.3 dB, 2.4 dB, and 0 dB in typical Urban, Suburban, and Rural environments. The losses were greater in environments with very large angular spread. It was also found that increasing accuracy in uplink DoA estimation does not necessarily correspond to improved downlink performance.
机译:在GSM 1800下行链路的背景下研究了智能天线概念。实际上,在使用频分双工(FDD)时无法估计实际的下行链路信道。因此,当前方法基于上行链路到达方向(DoA)估计。然后将下行链路波束定向到从上行链路获得的DoA。目的是研究下行链路性能对所需信号的角度和延迟分布的依赖性。在这项工作中,使用针对不同测试环境的带有2D通道模型的仿真研究了下行链路波束成形。结合DoA平均来评估所需移动站的DoA估计中的错误概率。此外,在噪声受限的情况下检查了下行链路BER性能,并将其与相应的上行链路和传统的2分支GSM接收机的结果进行了比较。使用1 * 8元素的天线配置,在典型的城市,郊区和农村环境中,与相应的上行链路情况相比,下行链路性能下降约为1.3 dB,2.4 dB和0 dB。在角度扩展非常大的环境中,损耗更大。还发现,上行链路DoA估计中增加的准确性不一定对应于改善的下行链路性能。

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