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On the Information Rate of MIMO Systems With Finite Rate Channel State Feedback Using Beamforming and Power On/Off Strategy

机译:基于波束赋形和电源开/关策略的具有有限速率信道状态反馈的MIMO系统的信息速率

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It is well known that multiple-input multiple-output (MIMO) systems have high spectral efficiency, especially when channel state information at the transmitter (CSIT) is available. In many practical systems, it is reasonable to assume that the CSIT is obtained by a limited (i.e., finite rate) feedback and is therefore imperfect. We consider the design problem of how to use the limited feedback resource to maximize the achievable information rate. In particular, we develop a low complexity power on/off strategy with beamforming (or Grassmann precoding), and analytically characterize its performance. Given the eigenvalue decomposition of the covariance matrix of the transmitted signal, refer to the eigenvectors as beams, and to the corresponding eigenvalues as the beam's power. A power on/off strategy means that a beam is either turned on with a constant power, or turned off. We will first assume that the beams match the channel perfectly and show that the ratio between the optimal number of beams turned on and the number of antennas converges to a constant when the numbers of transmit and receive antennas approach infinity proportionally. This motivates our power on/off strategy where the number of beams turned on is independent of channel realizations but is a function of the signal-to-noise ratio (SNR). When the feedback rate is finite, beamforming cannot be perfect, and we characterize the effect of imperfect beamforming by quantization bounds on the Grassmann manifold. By combining the results for power on/off and beamforming, a good approximation to the achievable information rate is derived. Simulations show that the proposed strategy is near optimal and the performance approximation is accurate for all experimented SNRs.
机译:众所周知,多输入多输出(MIMO)系统具有很高的频谱效率,尤其是当发射机(CSIT)上的信道状态信息可用时。在许多实际系统中,可以合理地假设CSIT是通过有限的(即有限速率)反馈获得的,因此是不完善的。我们考虑了设计问题,即如何使用有限的反馈资源来最大化可实现的信息速率。特别是,我们使用波束成形(或Grassmann预编码)开发了一种低复杂度的电源开/关策略,并对其性能进行了分析表征。给定所传输信号的协方差矩阵的特征值分解,则将特征向量称为波束,将相应的特征值称为波束的功率。电源开/关策略意味着以恒定功率打开或关闭光束。我们将首先假设波束与信道完全匹配,并表明当发射和接收天线的数量成比例地接近无穷大时,打开的最佳波束数量与天线数量之间的比率收敛为常数。这激发了我们的电源开/关策略,其中打开的波束数量与通道实现无关,但是是信噪比(SNR)的函数。当反馈速率是有限的时,波束成形不能是完美的,并且我们通过格拉斯曼流形上的量化界限来表征不完善的波束成形的效果。通过组合电源开/关和波束成形的结果,可以很好地近似可达到的信息速率。仿真表明,所提出的策略接近最优,并且对于所有实验的SNR而言,其性能逼近都是准确的。

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