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Performance of Conjugate and Zero-Forcing Beamforming in Large-Scale Antenna Systems

机译:大型天线系统中共轭和零强迫波束成形的性能

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Large-Scale Antenna Systems (LSAS) is a form of multi-user MIMO technology in which unprecedented numbers of antennas serve a significantly smaller number of autonomous terminals. We compare the two most prominent linear pre-coders, conjugate beamforming and zero-forcing, with respect to net spectral-efficiency and radiated energy-efficiency in a simplified single-cell scenario where propagation is governed by independent Rayleigh fading, and where channel-state information (CSI) acquisition and data transmission are both performed during a short coherence interval. An effective-noise analysis of the pre-coded forward channel yields explicit lower bounds on net capacity which account for CSI acquisition overhead and errors as well as the sub-optimality of the pre-coders. In turn the bounds generate trade-off curves between radiated energy-efficiency and net spectral-efficiency. For high spectral-efficiency and low energy-efficiency zero-forcing outperforms conjugate beamforming, while at low spectral-efficiency and high energy-efficiency the opposite holds. Surprisingly, in an optimized system, the total LSAS-critical computational burden of conjugate beamforming may be greater than that of zero-forcing. Conjugate beamforming may still be preferable to zero-forcing because of its greater robustness, and because conjugate beamforming lends itself to a de-centralized architecture and de-centralized signal processing.
机译:大规模天线系统(LSAS)是多用户MIMO技术的一种形式,其中空前数量的天线用于数量很少的自治终端。我们比较了两个最杰出的线性预编码器,共轭波束成形和迫零,在简化的单小区场景中,净频谱效率和辐射能效在其中,传播由独立的瑞利衰落控制,而信道状态信息(CSI)的获取和数据传输都在较短的相干间隔内执行。对预编码前向信道的有效噪声分析会在净容量上产生明确的下限,这将解决CSI采集开销和错误以及预编码器的次优问题。边界依次在辐射能效和净频谱效率之间产生折衷曲线。对于高频谱效率和低能量效率,零强迫优于共轭波束成形,而在低频谱效率和高能量效率时,相反。出乎意料的是,在优化的系统中,共轭波束形成的LSAS关键计算总负担可能大于零强制。共轭波束成形由于其更大的鲁棒性而仍然可能比强制零更可取,并且因为共轭波束成形使其适合于分散式架构和分散式信号处理。

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