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Antenna Placement Optimization for Distributed Antenna Systems

机译:分布式天线系统的天线布置优化

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In this paper, we propose new algorithms to determine the antenna location for downlink distributed antenna systems (DASs) in single-cell and two-cell environments. We consider the composite fading channel which includes small and large scale fadings. First, for the single-cell DAS, we formulate the optimization problem of distributed antenna (DA) port locations by maximizing the lower bound of the expected signal to noise ratio (SNR). In comparison to the conventional algorithm based on the squared distance criterion which requires an iterative method, our problem generates a closed form solution. Next, for the two-cell DAS, we propose a gradient ascent algorithm which determines the optimum DA locations by maximizing the lower bound of the expected signal to leakage ratio (SLR). In our work, we consider selection transmission, maximal ratio transmission and zero-forcing beamforming (ZFBF) under sum power constraint and study equal gain transmission and scaled ZFBF under per-antenna power constraint. Simulation results show that our proposed algorithms based on both the SNR and the SLR criteria offer a capacity gain over the conventional centralized antenna systems.
机译:在本文中,我们提出了新的算法来确定单小区和两小区环境中下行链路分布式天线系统(DAS)的天线位置。我们考虑包括小衰落和大衰落的复合衰落信道。首先,对于单小区DAS,我们通过最大化预期信噪比(SNR)的下限来制定分布式天线(DA)端口位置的优化问题。与基于平方距离标准的传统算法(需要迭代方法)相比,我们的问题生成了封闭形式的解决方案。接下来,对于两单元DAS,我们提出了一种梯度上升算法,该算法通过最大化预期信号泄漏比(SLR)的下限来确定最佳DA位置。在我们的工作中,我们考虑了总功率约束下的选择传输,最大比率传输和零强迫波束形成(ZFBF),并研究了每天线功率约束下的等增益传输和缩放ZFBF。仿真结果表明,我们提出的基于SNR和SLR标准的算法比常规集中式天线系统具有更大的容量增益。

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