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Precoding-Aided Spatial Modulation With Dual-Polarized Antennas Over Correlated Channels

机译:在相关通道上用双极化天线的预编码辅助空间调制

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In this letter, we propose a dual-polarized precoding-aided spatial modulation (DPPSM) scheme, which introduces the polarization dimension into conventional precoding-aided spatial modulation (PSM) to transmit an additional information bit, avoiding the occupation of additional physical space while offering extra transmit diversity. We obtain an upper bound on the average bit error probability (ABEP) of the proposed DPPSM scheme over correlated fading channels. We also derive an approximate upper bound on the ABEP to show the diversity order. Simulation results show that the upper bound is tight for a high signal-to-noise ratio (SNR) range, and the bit error rate (BER) performance of the proposed DPPSM scheme is better than that of the conventional PSM scheme at the same spectral efficiency when equipped with an equal amount of antennas. Furthermore, the proposed DPPSM scheme is more robust to Gaussian channel error when the channel estimation imperfection is considered.
机译:在这封信中,我们提出了一种双极化预编码辅助空间调制(DPPSM)方案,其将偏振维度引入传统的预编码辅助空间调制(PSM)以发送附加信息位,避免占用额外的物理空间提供额外的传递多样性。我们在相关的衰落通道上获得所提出的DPPSM方案的平均误码概率(ABEP)的上限。我们还在ABEP上获得了近似的上限,以显示多样性秩序。仿真结果表明,高信噪比(SNR)范围的上限是紧的,并且所提出的DPPSM方案的误码率(BER)性能优于相同光谱的传统PSM方案的误差率(BER)性能配备相同数量的天线时的效率。此外,当考虑信道估计不完美时,所提出的DPPSM方案对高斯信道错误更加强大。

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