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Rotationally-symmetrical array for self-interference reduction in full-duplex MIMO

机译:旋转对称阵列可降低全双工MIMO中的自干扰

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In order to realize a full-duplex wireless communication, the authors have proposed a spatial self-interference reduction technique with an end-fire array (EFA) which consumes only one degree of the multiple-input multiple-output (MIMO) freedom. However, this technique has a limited interference reduction performance due to an insufficient rank-degenerated interference channel because amplitude differences of the paths increase the rank of the channel in the EFA. In this letter, the authors propose a rotationally-symmetrical array (RSA) suitable for our conventionally proposing scenario to reduce the self-interference, where geometrical symmetry of the MIMO paths achieves a perfectly one-ranked channel and suppresses all of the self-interference in theory. Performance evaluation on the interference reduction level P _(BF) clarifies that the RSA reduces more interference than the EFA: P _(BF) = 47.3 dB (RSA), 23.0 dB (EFA) while array length of the transmitter (Tx), element spacing of the receiver (Rx), and distance between the Tx and Rx are 3.5 wavelengths, 0.5 wavelengths, and 5 wavelengths, respectively.
机译:为了实现全双工无线通信,作者提出了一种具有末端发射阵列(EFA)的空间自干扰减少技术,该技术仅消耗多输入多输出(MIMO)自由度的一个程度。然而,由于路径的幅度差异增加了EFA中信道的秩,因此该技术由于秩退化的干扰信道不足而具有有限的干扰降低性能。在这封信中,作者提出了一种旋转对称阵列(RSA),适用于我们常规提出的方案,以减少自干扰,其中MIMO路径的几何对称实现了一个完美的单级信道并抑制了所有自干扰理论上。对干扰降低水平 P _(BF)的性能评估表明,RSA比EFA减少的干扰更多: P _(BF)= 47.3 dB(RSA),23.0 dB(EFA),而阵列长度为发射器(Tx),接收器(Rx)的元件间距以及Tx和Rx之间的距离分别为3.5个波长,0.5个波长和5个波长。

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