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Training for Antenna Selection in Time-Varying Channels: Optimal Selection, Energy Allocation, and Energy Efficiency Evaluation

机译:时变信道中的天线选择培训:最佳选择,能量分配和能效评估

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Single receive antenna selection (AS) is a popular method for obtaining diversity benefits without the additional costs of multiple radio receiver chains. Since only one antenna receives at any time, the transmitter sends a pilot multiple times to enable the receiver to estimate the channel gains of its N antennas to the transmitter and select an antenna. In time-varying channels, the channel estimates of different antennas are outdated to different extents. We analyze the symbol error probability (SEP) in time-varying channels of the N-pilot and (N + 1)-pilot AS training schemes. In the former, the transmitter sends one pilot for each receive antenna. In the latter, the transmitter sends one additional pilot that helps sample the channel fading process of the selected antenna twice. We present several new results about the SEP, optimal energy allocation across pilots and data, and optimal selection rule in time-varying channels for the two schemes. We show that due to the unique nature of AS, the (N +1)-pilot scheme, despite its longer training duration, is much more energy-efficient than the conventional N-pilot scheme. An extension to a practical scenario where all data symbols of a packet are received by the same antenna is also investigated.
机译:单接收天线选择(AS)是一种获得分集收益的流行方法,而无需多个无线电接收器链的额外费用。由于在任何时候只有一个天线接收信号,因此发射机会多次发送导频信号,以使接收机能够估计其N根天线到发射机的信道增益并选择天线。在时变信道中,不同天线的信道估计在不同程度上已经过时。我们分析了N飞行员和(N +1)飞行员AS训练方案随时间变化的信道中的符号错误概率(SEP)。在前者中,发射机为每个接收天线发送一个导频。在后者中,发射机发送一个额外的导频,以帮助对所选天线的信道衰落过程进行两次采样。我们提出了有关SEP,两个飞行员和数据之间的最佳能量分配以及两种方案的时变信道中的最佳选择规则的一些新结果。我们显示,由于AS的独特性质,尽管训练时间较长,但(N +1)-飞行员计划比传统的N-飞行员计划具有更高的能源效率。还研究了对实际情况的扩展,在实际情况中,同一天线接收到一个数据包的所有数据符号。

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