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Interference mitigation in mm-wave backhaul networks with limited channel-state information

机译:信道状态信息有限的毫米波回程网络中的干扰缓解

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Our goal is to identify if limited channel-state information is sufficient to mitigate interferences between the stations of a wireless mobile backhaul network, which is especially of great importance if the network employs full-duplex operation or terrestrial and satellite links sharing the same spectrum. We analyze and compare the signal-to-interference-and-noise ratio of plain beam steering and zero-forcing beam steering for a millimeter-wave backhaul network with limited channel-state information where only the positions of the stations are known, while buildings and other possible sources of multipath components are unknown. Numerical analyses based on raytracing in a realistic urban scenario reveal that zero-forcing beam steering outperforms plain beam steering by about 12 dB. Furthermore, we compare the steering approaches to block diagonalization with full channel-state information as a reference. For situations with low signal-to-noise ratio as in wide-band communications, zero-forcing beam steering can achieve a similar signal-to-noise-and-interference ratio to block diagonalization. We conclude that knowing the positions of wireless backhaul stations obviates the need for expensive channel estimation.
机译:我们的目标是确定有限的信道状态信息是否足以缓解无线移动回程网络的站点之间的干扰,如果网络使用全双工操作或共享同一频谱的地面和卫星链路,则这一点尤其重要。我们分析和比较了毫米波回程网络中具有有限信道状态信息的纯波束控制和零强迫波束控制的信号干扰噪声比,而仅知道站的位置,而建筑物以及其他可能的多径组件来源。在现实的城市场景中,基于光线跟踪的数值分析表明,零强迫光束转向的性能比普通光束转向的性能高约12 dB。此外,我们以全信道状态信息为参考,比较了控制块对角化的方法。对于宽带通信中信噪比低的情况,迫零波束控制可以实现类似的信噪比以阻止对角线化。我们得出的结论是,知道无线回传站的位置消除了对昂贵的信道估计的需求。

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