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Coordinated Uplink Precoding for Spatially Consistent mmWave Channel Covariance Measurements

机译:空间一致的毫米波信道协方差测量的协调上行链路预编码

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We are interested in deducing whether two users in a cellular system are at nearby physical locations from measuring similarity of their covariance matrices at a base station. This becomes challenging in multiple-input-multiple-output mmWave channels, as the semi-optical nature of mmWave radio propagation gives rise to non-Kronecker correlation. Hence, the estimated BS covariance matrix depends on the UE pilot beamformer, and moreover, on the direction of movement in the radio environment. A coordinated UE pilot transmission approach is needed to make measured covariances spatially consistent. We formulate the UE pilot beamformer selection problem as an optimization problem aiming to preserve the spatial consistency of a set of UEs moving in the same large-scale radio environment. We use the collinearity matrix distance to measure the similarity of the BS covariance matrices of UEs in the radio environment. Covariance matrix and instantaneous channel state based UE pilot beamformers with different ranks are considered. Simulations are used to evaluate the spatial consistency provided by coordinated uplink precoding methods. Depending on the expected signal-to-noise ratio, there is an optimal rank for the UE pilot transmission, which maximizes the similarity between covariances estimated from transmissions of different UEs in the same large-scale fading environment.
机译:我们有兴趣通过测量基站的协方差矩阵的相似性来推断蜂窝系统中的两个用户是否在附近的物理位置。由于mmWave无线电传播的半光学特性引起了非Kronecker相关性,因此在多输入多输出mmWave通道中这变得具有挑战性。因此,估计的BS协方差矩阵取决于UE导频波束形成器,并且此外取决于无线电环境中的移动方向。需要协调的UE导频传输方法以使所测量的协方差在空间上一致。我们将UE导频波束形成器选择问题表述为优化问题,旨在保留在相同大规模无线电环境中移动的一组UE的空间一致性。我们使用共线性矩阵距离来测量无线环境中UE的BS协方差矩阵的相似性。考虑具有不同等级的协方差矩阵和基于瞬时信道状态的UE导频波束形成器。仿真用于评估由协调的上行链路预编码方法提供的空间一致性。取决于预期的信噪比,存在用于UE导频传输的最佳等级,该等级使从同一大规模衰落环境中不同UE的传输估计的协方差之间的相似度最大化。

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