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3G wireless capacity optimization for widely spaced antenna arrays

机译:适用于宽间隔天线阵列的3G无线容量优化

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Adaptive arrays can significantly increase cell capacity, improve signal quality, and reduce transmitter power requirements. In this article we establish a relationship between the information theoretic capacity of a mobile radio system and the beam pattern of a multisensor array. We investigate the capacity improvement potentially achieved via an optimized design strategy for an unequally spaced array; that is, the positions and the weighting coefficients of the array elements are selected to improve the average system capacity subject to various constraints like minimizing the maximum sidelobe level or keeping the beamwidth of the main lobe to a minimum. Next, we investigate the effect of fading correlation on the performance of an unequally spaced adaptive array. Results are presented for optimum combining with flat fading as well as for frequency-selective fading using a two-path delay spread model. Computer simulations show that it is possible to achieve a gain of 1.5 dB for moderate to high signal-to-noise ratios when compared to the equally spaced array. Finally, it is shown that a base station with wide antenna element spacing has improved bit error rate performance over one with narrow element spacing under cochannel interference and multipath fading. In particular, we improve the performance for both uplink and downlink transmissions in a slow fading channel with cochannel interference. Promising results are presented for a 4 channel carrier time division duplexing system.
机译:自适应阵列可以显着提高电池容量,改善信号质量并降低发射器功率要求。在本文中,我们建立了移动无线电系统的信息理论容量与多传感器阵列的波束方向图之间的关系。我们研究了通过优化设计策略针对不等距阵列可能实现的容量提高;也就是说,选择阵列元件的位置和权重系数以提高平均系统容量,该平均系统容量受到各种限制,例如最小化最大旁瓣电平或将主瓣的波束宽度保持在最小。接下来,我们研究衰落相关性对不等距自适应阵列性能的影响。给出了与平坦衰落以及使用两径延迟扩展模型进行频率选择性衰落的最佳组合的结果。计算机仿真表明,与等距阵列相比,对于中等到高的信噪比,有可能实现1.5 dB的增益。最后,表明在同信道干扰和多径衰落下,具有较宽天线单元间距的基站比具有较窄单元间距的基站具有更高的误码率性能。特别是,我们在具有同信道干扰的慢衰落信道中提高了上行链路和下行链路传输的性能。提出了有希望的4信道载波时分双工系统结果。

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