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首页> 外文期刊>IEEE transactions on wireless communications >Distributed Pareto Optimal Beamforming for the MISO Multi-Band Multi-Cell Downlink
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Distributed Pareto Optimal Beamforming for the MISO Multi-Band Multi-Cell Downlink

机译:分布式帕累托最优波束成形MISO多频段下行链路

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摘要

In this paper, we consider a multi-cell multi-band downlink where the base station (BS) in each cell has multiple transmit antennas. Each cell has one active mobile station (MS) with a single receive antenna and treats interference from the other cells as noise. There is a sum transmit power constraint for each BS over all the bands. An alternating maximization (AM) algorithm is proposed to determine the optimal power allocation among the bands and the optimal beamforming vectors for each BS in each band. This algorithm can be implemented in a distributed manner with limited exchange of interference constraints between the BSs, and only local channel state information at each BS. The proposed algorithm alternates between: (1) weighted sum-rate (WSR) optimization for the beamformers in each band for a given power allocation, and (2) optimal power allocation across bands for a given set of beamformers. For the 2-cell and 3-cell settings the WSR optimization in each band is significantly simplified using analytical solutions for the sub-problems. The power allocation across bands for a given set of beamformers is obtained analytically in all cases. Numerical results show good convergence properties and significant performance gain using the proposed AM algorithm compared to: (i) equal power allocation across bands and weighted sum-rate optimization in each band, (ii) zero-forcing (ZF) beamforming, and (iii) maximal ratio transmission (MRT) beamforming.
机译:在本文中,我们考虑一个多电池多频段下行链路,其中每个小区中的基站(BS)具有多个发射天线。每个小区具有一个有源移动站(MS),具有单个接收天线,并将其他小区的干扰视为噪声。在所有频带上都有一个SUM发送功率约束。提出了一种交替的最大化(AM)算法以确定每个频带中的每个BS的频带和最佳波束形成矢量之间的最佳功率分配。该算法可以以分布式方式实现,其在BSS之间具有有限的干扰约束交换,并且在每个BS处仅局部信道状态信息。所提出的算法在:(1)给定功率分配的每个频带中的波束形成器的加权和速率(WSR)优化,以及给定的一组波束形成器的频带的最佳功率分配。对于2个单元和3个单元设置,使用对子问题的分析解决方案显着简化了每个频段的WSR优化。在所有情况下,在所有情况下,在分析地获得给定的一组波束形成器的带的功率分配。数值结果显示,使用所提出的AM算法的良好收敛性和显着性能增益与:(i)每个频带中的频带和加权和速率优化相比的电力分配,(ii)零强制(ZF)波束成形,和(III )最大比率传输(MRT)波束成形。

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