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首页> 外文期刊>IEEE Transactions on Signal Processing >Interference Suppression and Diversity Exploitation for Multiantenna CDMA With Ultra-Low Complexity Receivers
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Interference Suppression and Diversity Exploitation for Multiantenna CDMA With Ultra-Low Complexity Receivers

机译:具有超低复杂度接收机的多天线CDMA的干扰抑制和分集开发

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We consider transmitter precoding for interference suppression and diversity exploitation for multiantenna, multipath code division multiple access (CDMA). The receivers are constrained to matched filter detection without channel state information (CSI) or receiver-based multiuser detection. We first develop precoders for flat-fading scenarios where perfect downlink channel information is available at the transmitter. We show that full transmit antenna diversity is achievable, even for nonorthogonal spreading codes, although we suffer an SNR loss that is a simple function of the spreading code crosscorrelations. We also develop precoders for cases in which the transmitter has partial channel information, which is modeled as knowledge of conditional channel correlation matrices, and we apply them to Jakes' fading model. Finally, we show that the precoding approach for flat fading can be modified for multipath fading to fully exploit multipath diversity when used in conjunction with prerake diversity combining. We show, in summary, that transmitter precoding offers a reasonable alternative to receiver-based multiuser signal processing when minimizing computational complexity at the mobile unit is a priority.
机译:我们考虑将发射机预编码用于多天线,多径码分多址(CDMA)的干扰抑制和分集开发。接收器被约束为没有信道状态信息(CSI)或基于接收器的多用户检测的匹配滤波器检测。我们首先开发用于平面衰落场景的预编码器,其中在发射机处可获得完美的下行链路信道信息。我们表明,即使对于非正交扩展码,也可以实现完全的发射天线分集,尽管我们遭受的SNR损失是扩展码互相关的简单函数。我们还针对发射机具有部分信道信息的情况开发了预编码器,将其建模为条件信道相关矩阵的知识,并将其应用于Jakes衰落模型。最后,我们表明,与前瑞克分集组合一起使用时,可以修改多径衰落的预编码方法,以充分利用多径分集。总而言之,当最小化移动单元的计算复杂度是优先事项时,我们表明,发射机预编码为基于接收机的多用户信号处理提供了合理的替代方案。

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