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Joint Transceiver Design With Antenna Selection for Large-Scale MU-MIMO mmWave Systems

机译:大型MU-MIMO mmWave系统的天线选择联合收发器设计

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This paper considers the uplink of large-scale multiple-user multiple-input multiple-output millimeter wave systems, where several mobile stations (MSs) communicate with a single base station (BS) equipped with a large-scale antenna array, for application to fifth generation wireless networks. Within this context, the use of hybrid transceivers along with antenna selection can significantly reduce the implementation cost and energy consumption of analog phase shifters and low-noise amplifiers. We aim to jointly design the MS beamforming vectors, the hybrid receiving matrices (baseband and analog), and the antenna selection matrix at the BS in order to maximize the achievable system sum-rate under a set of constraints. The corresponding optimization problem is nonconvex and difficult to solve, mainly due to the receive antenna selection and constant modulus constraints on the analog receiving matrix. By exploiting the special structure of the problem and linear relaxation, we first convert this problem into three subproblems, which are solved via an alternating optimization method. The latter iteratively updates the antenna selection matrix, the transmit beamforming vectors, and the hybrid receiving matrices by sequentially addressing each subproblem while keeping the other variables fixed. Specifically, the antenna selection matrix is optimized via the concave–convex procedure; the weighted mean-square error minimization approach is used to find the solution for the transmit beamformer; and the hybrid receiver is obtained via manifold optimization. The convergence of the proposed algorithm is analyzed and its effectiveness is verified by simulation.
机译:本文考虑了大型多用户多输入多输出毫米波系统的上行链路,其中几个移动台(MS)与配备了大型天线阵列的单个基站(BS)通信,以应用于第五代无线网络。在这种情况下,混合收发器的使用以及天线的选择可以显着降低模拟移相器和低噪声放大器的实施成本以及能耗。我们的目标是在BS处共同设计MS波束成形矢量,混合接收矩阵(基带和模拟)以及天线选择矩阵,以便在一组约束条件下最大化可实现的系统总速率。相应的优化问题是非凸的,并且难以解决,这主要是由于接收天线的选择以及模拟接收矩阵上恒定的模数约束所致。通过利用问题的特殊结构和线性松弛,我们首先将此问题转换为三个子问题,这些问题可以通过交替优化方法来解决。后者通过依次寻址每个子问题,同时保持其他变量不变,来迭代地更新天线选择矩阵,发射波束成形矢量和混合接收矩阵。具体来说,天线选择矩阵通过凹凸过程进行了优化。加权均方误差最小化方法用于找到发射波束形成器的解;混合接收器通过流形优化获得。分析了该算法的收敛性,并通过仿真验证了其有效性。

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