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Variable-Phase-Shift-Based RF-Baseband Codesign for MIMO Antenna Selection

机译:基于可变相移的RF基带协同设计,用于MIMO天线选择

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We introduce a novel soft antenna selection approach for multiple antenna systems through a joint design of both RF (radio frequency) and baseband signal processing. When only a limited number of frequency converters are available, conventional antenna selection schemes show severe performance degradation in most fading channels. To alleviate those degradations, we propose to adopt a transformation of the signals in the RF domain that requires only simple, variable phase shifters and combiners to reduce the number of RF chains. The constrained optimum design of these shifters, adapting to the channel state, is given in analytical form, which requires no search or iterations. The resulting system shows a significant performance advantage for both correlated and uncorrelated channels. The technique works for both transmitter and receiver design, which leads to the joint transceiver antenna selection. When only a single information stream is transmitted through the channel, the new design can achieve the same SNR gain as the full-complexity system while requiring, at most, two RF chains. With multiple information streams transmitted, it is demonstrated by computer experiments that the capacity performance is close to optimum.
机译:通过RF(射频)和基带信号处理的联合设计,我们为多天线系统引入了一种新颖的软天线选择方法。当只有有限数量的变频器可用时,常规天线选择方案会在大多数衰落信道中显示出严重的性能下降。为了减轻这些降级,我们建议对RF域中的信号进行转换,该转换仅需要简单的可变移相器和组合器即可减少RF链的数量。这些移位器的受约束的最佳设计以适应通道状态的形式以解析形式给出,不需要搜索或迭代。所得的系统对于相关和不相关通道均显示出显着的性能优势。该技术适用于发射器和接收器设计,这导致了联合收发器天线的选择。当仅单个信息流通过通道传输时,新设计可以获得与全复杂系统相同的SNR增益,同时最多需要两个RF链。通过传输多个信息流,计算机实验证明容量性能接近最佳。

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