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Iterative Joint Beamforming Training with Constant-Amplitude Phased Arrays in Millimeter-Wave Communications

机译:毫米波通信中具有恒定振幅相控阵的迭代联合波束成形训练

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摘要

In millimeter-wave communications (MMWC), in order to compensate for high propagation attenuation, phased arrays are favored to achieve array gain by beamforming, where transmitting and receiving antenna arrays need to be jointly trained to obtain appropriate antenna weight vectors (AWVs). Since the amplitude of each element of the AWV is usually constraint constant to simplify the design of phased arrays in MMWC, the existing singular vector based beamforming training scheme cannot be used for such devices. Thus, in this letter, a steering vector based iterative beamforming training scheme, which exploits the directional feature of MMWC channels, is proposed for devices with constant-amplitude phased arrays. Performance evaluations show that the proposed scheme achieves a fast convergence rate as well as a near optimal array gain.
机译:在毫米波通信(MMWC)中,为了补偿高传播衰减,相控阵更倾向于通过波束成形来实现阵列增益,在这种情况下,需要共同训练发射和接收天线阵列以获得适当的天线权重矢量(AWV)。由于AWV的每个元素的振幅通常是约束常数,以简化MMWC中的相控阵设计,因此现有的基于奇异矢量的波束成形训练方案无法用于此类设备。因此,在这封信中,针对具有恒定振幅相控阵的设备,提出了一种基于转向矢量的迭代波束成形训练方案,该方案利用了MMWC信道的方向特征。性能评估表明,该方案实现了快速收敛速度以及接近最佳的阵列增益。

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